EP1872709A1 - Endoscope system, treatment instrument cartridge, and storage case - Google Patents
Endoscope system, treatment instrument cartridge, and storage case Download PDFInfo
- Publication number
- EP1872709A1 EP1872709A1 EP07000080A EP07000080A EP1872709A1 EP 1872709 A1 EP1872709 A1 EP 1872709A1 EP 07000080 A EP07000080 A EP 07000080A EP 07000080 A EP07000080 A EP 07000080A EP 1872709 A1 EP1872709 A1 EP 1872709A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- treatment instrument
- section
- inserting portion
- sheath
- hole
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
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- 208000027418 Wounds and injury Diseases 0.000 claims abstract description 25
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- 230000037431 insertion Effects 0.000 claims description 16
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- 238000004804 winding Methods 0.000 claims description 9
- 238000004891 communication Methods 0.000 claims description 7
- 238000000605 extraction Methods 0.000 claims description 2
- 208000033748 Device issues Diseases 0.000 abstract description 2
- 238000005070 sampling Methods 0.000 description 45
- 230000008878 coupling Effects 0.000 description 29
- 238000010168 coupling process Methods 0.000 description 29
- 238000005859 coupling reaction Methods 0.000 description 29
- 238000001574 biopsy Methods 0.000 description 21
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Images
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/012—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor characterised by internal passages or accessories therefor
- A61B1/018—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor characterised by internal passages or accessories therefor for receiving instruments
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B1/00—Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
- A61B1/00131—Accessories for endoscopes
- A61B1/00133—Drive units for endoscopic tools inserted through or with the endoscope
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M25/00—Catheters; Hollow probes
- A61M25/01—Introducing, guiding, advancing, emplacing or holding catheters
- A61M25/0105—Steering means as part of the catheter or advancing means; Markers for positioning
- A61M25/0113—Mechanical advancing means, e.g. catheter dispensers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods
- A61B2017/00367—Details of actuation of instruments, e.g. relations between pushing buttons, or the like, and activation of the tool, working tip, or the like
- A61B2017/00398—Details of actuation of instruments, e.g. relations between pushing buttons, or the like, and activation of the tool, working tip, or the like using powered actuators, e.g. stepper motors, solenoids
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods
- A61B17/22—Implements for squeezing-off ulcers or the like on inner organs of the body; Implements for scraping-out cavities of body organs, e.g. bones; for invasive removal or destruction of calculus using mechanical vibrations; for removing obstructions in blood vessels, not otherwise provided for
- A61B2017/22072—Implements for squeezing-off ulcers or the like on inner organs of the body; Implements for scraping-out cavities of body organs, e.g. bones; for invasive removal or destruction of calculus using mechanical vibrations; for removing obstructions in blood vessels, not otherwise provided for with an instrument channel, e.g. for replacing one instrument by the other
- A61B2017/22074—Implements for squeezing-off ulcers or the like on inner organs of the body; Implements for scraping-out cavities of body organs, e.g. bones; for invasive removal or destruction of calculus using mechanical vibrations; for removing obstructions in blood vessels, not otherwise provided for with an instrument channel, e.g. for replacing one instrument by the other the instrument being only slidable in a channel, e.g. advancing optical fibre through a channel
- A61B2017/22075—Implements for squeezing-off ulcers or the like on inner organs of the body; Implements for scraping-out cavities of body organs, e.g. bones; for invasive removal or destruction of calculus using mechanical vibrations; for removing obstructions in blood vessels, not otherwise provided for with an instrument channel, e.g. for replacing one instrument by the other the instrument being only slidable in a channel, e.g. advancing optical fibre through a channel with motorized advancing or retracting means
Definitions
- the present invention relates to an endoscope system, comprising an endoscope, a treatment instrument used with the endoscope, and a storage case for containing an elongated treatment instrument inserting portion of the treatment instrument.
- An endoscope in the medical field has an inserting portion which is inserted into a body cavity of a subject for observation.
- the inserting portion of the endoscope is provided with a treatment instrument channel through which a treatment instrument is introduced into the body cavity for various procedures.
- the operator When an operator performs a medical procedure by inserting a treatment instrument into a treatment instrument channel of an endoscope, the operator introduces the treatment instrument through the treatment instrument channel into a body cavity. During the introduction, the operator holds the endoscope at its operating portion with one hand. So, in order to insert the treatment instrument through the treatment instrument channel, the operator needs to hold, with the other hand, a sheath which is an introducing section of the treatment instrument, and manually inserts the sheath into the treatment instrument channel. The sheath is held at its base end by a staff such as a nurse. Such holding is necessary to keep a part of the sheath, having a length of 2 m for example, from touching dirty areas including floor during the insertion.
- Japanese Patent Application Laid-Open No. 2004-208961 discloses an endoscope conduit cleaning apparatus comprising a brush cassette.
- the endoscope conduit cleaning apparatus has a delivery roller which can be rotated in any direction as needed.
- An endoscope conduit cleaning brush is contained in a brush cassette in the cleaning apparatus, and the cleaning brush is delivered from a guiding section at a distal end of the cleaning apparatus into an endoscope conduit, and the delivered endoscope conduit cleaning brush can be wound up again to be stored in the brush cassette.
- the brush section can be delivered out and stored in by advancing and retracting a wire, but the wire defines only the forward and backward movement of the brush section.
- Japanese Patent Application Laid-Open No. 2005-334132 discloses a treatment instrument for endoscope having a storage device, so-called a drum, which is provided with a rotatable roll member for winding up an inserting portion of an endoscope.
- a treatment instrument for endoscope an operation of a sheath by hand or operation of the drum by hand causes the inserting portion to be delivered and stored.
- the operating portion of the treatment instrument can be mounted to a side surface of a storage main body.
- a first object of the present invention is to provide an endoscope system including a treatment instrument cartridge in which an elongated sheath of the treatment instrument is contained in a sheath storing section in a stable state, and the treatment instrument before use can be placed and left unattended in a sterile condition at a position close to an operator or in an operation room, and the treatment instrument after use can be immediately moved away from the operator and be left unattended.
- a second object of the present invention is to provide an endoscope system which allows an operator to introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel alone by himself/herself with a minimum extension of the sheath outward.
- a third object of the present invention is to provide an endoscope system in which a treatment section and a sheath can be inserted into a body cavity by allowing the treatment section and the sheath which are extracted from the sheath storing section of a treatment instrument cartridge to be inserted through a treatment instrument channel via a coupling tube without any exposure to the exterior environment.
- a fourth object of the present invention is to provide an endoscope system which allows an operator to introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel, and to sample a tissue by manipulating the tissue sampling section for its opening and closing while manipulating the tissue sampling section for its advancement and retraction, alone by himself/herself.
- An endoscope system comprises an endoscope, a treatment instrument cartridge, an advancing and retracting device, a controlling device, and an operation instructing device.
- the endoscope includes an inserting portion which has a treatment instrument channel formed therein.
- the treatment instrument cartridge includes a treatment instrument and a storage case.
- the treatment instrument has a treatment instrument inserting portion having an elasticity which is inserted through the treatment instrument channel, a treatment section at a tip end of the treatment instrument, an operating portion at a base end of the treatment instrument.
- the storage case includes an inserting portion storing section for winding up the treatment instrument inserting portion, an extension port from which the tip end of the wound treatment instrument inserting portion is extended, a holding section for holding a part of the treatment instrument inserting portion nearer the base end or the operating portion.
- the advancing and retracting device has a driving power source, and is displaced between the treatment instrument channel and the extension port.
- the controlling device is electrically connected to the driving power source, and controls an operation of the driving power source.
- the operation instructing device issues an instruction on an operation of the driving power source to the controlling device.
- FIGS. 1 to 12 a first embodiment of the present invention will be explained.
- an endoscope system 1 generally comprises an operation instructing device 2, an endoscope 10, a controlling device 20 which serves as a light source device and a video processor, a treatment instrument 50, a storage case (hereinafter, referred to as a case body) 30 in which the sheath 52 which is a treatment instrument inserting portion of the treatment instrument 50 is contained, and an electric device for advancing and retracting a treatment instrument inserting portion (hereinafter, referred to as an electric advancing and retracting device) 40 which is an advancing and retracting device.
- a treatment instrument cartridge 9 is comprised with the case body 30 which contains at least the treatment instrument inserting portion of the treatment instrument 50.
- the operation instructing device 2 is of a generally cylindrical shape, and includes a rigid main body 3, and a grip 4 which may be an elastic member coupled to the main body 3.
- the main body 3 and the grip 4 are integrally formed as a unit by fitting a fitting projection (not shown) which extends from a central portion of a base end surface of the main body 3 into a fitting hole (not shown) which is formed in a tip end surface of the grip 4.
- a signal cable 2a extends from a base end of the grip 4.
- the signal cable 2a is electrically connected to the controlling device 20 at a base end thereof.
- the main body 3 has a circumferential surface on which an operation instructing section 5 is provided.
- the grip 4 includes a grip section 4a which has a concavo-convex profile. This profile allows an operator to hold the operation instructing device 2 without fail when the operator holds the grip section 4a.
- the grip section 4a is provided on the other side of circumferential surface of the grip 4 relative to the operation instructing section 5 of the main body 3.
- a tip end of the operation instructing device 2 means the tip end surface of the main body 3, and a base end of the operation instructing device 2 means the base end surface of the grip 4.
- the operation instructing section 5 may be a joy stick type of operation lever 5a, for example.
- an instruction signal to cause the sheath 52 to be advanced is output from the operation instructing section 5 to the control section 21 of the controlling device 20.
- an instruction signal to cause the sheath 52 to be retracted is output from the operation instructing section 5 to the control section 21 of the controlling device 20.
- the endoscope 10 comprises an inserting portion 11, and an operating portion 12, and a universal cord 13.
- the operating portion 12 also serves as a holding section, and is provided at a base end of the inserting portion 11.
- the universal cord 13 extends from a side of the operating portion 12 to be connected to the controlling device 20 at a base end thereof.
- the inserting portion 11 comprises, in order from a tip end thereof, a rigid tip end section 11a, a bendable bending section 11b, and a flexible tube section 11c having a flexibility.
- the tip end section 11a has a tip end opening 11d formed therein.
- the operating portion 12 is provided with a protection hood portion 12a having a base end of the flexible tube section 11a connected thereto.
- the operating portion 12 includes an opening for treatment instrument 12b at its tip end, and includes an air/water supplying button 14a for supplying air/water, a suction button 14b for suctioning, bending control knobs 15a and 15b for controlling the bending of the bending section 11b, and various switches 16 for controlling endoscope images which are caught by an image capturing device at the tip end 11a at its base end.
- the inserting portion 11 of the endoscope 10 also includes a treatment instrument channel 11e which is in communication between the opening for treatment instrument 12b and the tip end opening 11d.
- the controlling device 20 includes the control section 21, a lamp which emitting an illumination light (not shown), a signal processing circuit (not shown), and the like.
- the signal processing circuit generates a driving signal to drive an image capturing device such as CCD (not shown) which is located to the tip end of the endoscope, converts an electrical signal transmitted from the image capturing device into an image signal, and the like.
- the controlling device 20 is connected with a displaying apparatus such as a liquid crystal display (not shown) for displaying an endoscope image.
- the treatment instrument 50 may be for example a biopsy forceps (hereinafter, referred to as a biopsy forceps 50), and includes a sheath 52 which is a flexible tube member having a predetermined flexibility.
- the sheath 52 includes a tissue sampling section 51 at a tip end side of a tip end 52a thereof as a treatment section.
- the tissue sampling section 51 includes a pair of closable and openable biopsy cups.
- an operation wire (not shown) is inserted.
- the operation wire is controlled to be advanced or retracted by an operation of a handle section 53.
- the handle section 53 includes a finger engaging ring 54 and a slider 55.
- the finger engaging ring 54 has a hole 54a formed therein to which an operator's thumb for example may be engaged.
- the slider 55 has a pair of flanges 55a to which an operator's second and third fingers may be engaged.
- the case body 30 is a storage case for containing the sheath 52 therein, and includes a sheath storing section 31, a treatment instrument holding section 32, and a sheath extracting section 33.
- the sheath storing section 31 is a storing space in which a sheath 52 is contained.
- the sheath storing section 31 is configured with a first member 34 having a recess for the storing space (which is designated 38c in FIG. 7 described below) and a second member 35 disposed to cover an opening of the recess, which are integrally fixed to each other.
- the treatment instrument holding section 32 has a handle mounting hole 32a formed therein, in which the handle section 53 of the biopsy forceps 50 is mounted.
- the handle mounting hole 32a is a second through-hole which defines a direction in which a part of the sheath 52 nearer at the base end 52b is extracted as predetermined, and is configured to serve as a second defining section.
- a sheath extracting section 33 is provided at the center of the first member 34 as a projected portion.
- the sheath extracting section 33 has an extracting hole 33a formed therein.
- the extracting hole 33a is an extension port to which the stored sheath 52 in the storing space is extracted out of the case body 30.
- the extracting hole 33a is a first through-hole constituting an insertion port, and is configured to serve as a first defining section.
- the extracting hole 33a and the handle mounting hole 32a in the case body 30 are provided so that, as shown in FIG. 5, a plane 33P including the central axis of the extracting hole 33a and the plane 32P including the central axis of the handle mounting hole 32a intersect with each other at a right angle, while the central axis of the extracting hole 33a and the central axis of the handle mounting hole 32a do not intersect with each other.
- the central axis of the handle mounting hole 32a is a line tangent to an imaginary circle 33S around a point at the intersection of the central axis of the extracting hole 33a on the guiding plane 36a, as shown by two-dot chain line in FIG. 6. Therefore, when the case body 30 is seen from the direction shown by an arrow in FIG. 5, the central axis of the extracting hole 33a and the central axis of the handle mounting hole 32a intersect with each other at a right angle.
- the electric advancing and retracting device 40 is removably mounted to sheath extracting section 33 of the case body 30.
- the electric advancing and retracting device 40 is electrically connected to the controlling device 20 via an electrical cable 40a in which a signal line is inserted.
- the electric advancing and retracting device 40 causes the sheath 52 of the biopsy forceps 50 to be advanced or retracted based on an operation of the operation lever 5a on the operation instructing device 2.
- reference numeral 6 designates a coupling tube.
- the coupling tube 6 has one end which is mounted to the opening for treatment instrument 12b, and the other end mounted to the electric advancing and retracting device 40. Therefore, the sheath 52 extracted out of the case body 30 is introduced into the treatment instrument channel 11e via the coupling tube 6.
- FIG. 1, FIG. 2, and FIG. 3 the electric advancing and retracting device 40 will be explained below.
- the sheath extracting section 33 has an extracting hole 33a which is in communication between the exterior and the inside of the sheath storing section 31.
- the sheath extracting section 33 includes a mounting section 33b on which the electric advancing and retracting device 40 is mounted.
- the electric advancing and retracting device 40 has a housing 41 which is provided with two rotatable rollers 43a and 43b therein.
- the housing 41 includes surfaces facing each other, and one of the surfaces has a sheath inserting hole 41 a formed therein through which the sheath 52 passes after extracted out of the sheath extracting section 33.
- Surrounded the sheath inserting hole 41 a is a couplable fixing section 41 b for coupling the housing 41 to a mounting section 33b.
- the couplable fixing section 41b is configured to be hermetically connected to the mounting section 33b.
- the other surface of the housing 41 has a treatment instrument inserting portion 42 formed therein through which the sheath 52 is inserted after passed the sheath inserting hole 41 a.
- the treatment instrument inserting portion 42 has a communicating hole 42a formed therein into which a forceps plug 42b of an elastic material is placed.
- the forceps plug 42b has a slit 42c formed therein through which the sheath 52 is inserted.
- the two rollers 43a and 43b in the housing 41 are made of a resin material having an elasticity respectively.
- the rollers 43a and 43b are integrally fixed to rotation axes 43A and 43B thereof respectively.
- the sheath 52 which is inserted in the housing 41 after passed the sheath inserting hole 41 a, is displaced between the roller 43a and the roller 43b.
- This arrangement makes the outer surface of the sheath 52 pressed and held between the roller 43a and the roller 43b.
- the rotation axis 43A is a driving axis, and an operation of a motor 44 which is a driving power source mounted in the housing 41 causes the rotation axis 43A to be rotated.
- the rotation axis 43B is a driven axis which is rotatably mounted in the housing 41.
- an operation of the motor 44 allows the sheath 52 which is held between the roller 43a and the roller 43b to be moved corresponding to the rotation of the roller 43a. That is, the sheath 52 is advanced or retracted in the treatment instrument channel 11e by controlling the direction in which the motor 44 is driven to rotate.
- the motor 44 is controlled to be driven by the control section 21 of the controlling device 20 based on an operation of the operation lever 5a.
- rotation axes 43A and 43B are rotatably supported by side walls of the housing 41 and a supporting plate 41 c so that the rotation axes 43A and 43B are parallel to each other and roller surfaces of the rollers 43a and 43b which are fixedly mounted to the rotation axes 43A and 43B respectively are separated across a predetermined space.
- the case body 30 may be, for example, divided into two portions of the first member 34 and the second member 35.
- the dividing surfaces between the first member 34 and the second member 35 are integrally fixed to each other by adhering, fusion bonding, or the like.
- At least one of the first member 34 and the second member 35 of the case body 30 is desirably made of a transparent or semi-transparent resin material. This allows an operator to visually check a state of the sheath 52 stored in the sheath storing section 31 through the first member 34 or the second member 35.
- the second member 35 includes a flat plate 36 and a second holding section component 37.
- the flat plate 36 may be of a circular shape, and one part of the flat plate 36 is a guiding plane 36a against which the sheath 52 abuts. It should be noted that an outer peripheral portion surrounding the guiding plane 36a is the above-described dividing surface and also a placement surface 36b on which the first member 34 is placed.
- the shape of the flat plate is not limited to a circle, and the flat plate 36 may be of any shape including polygonal shapes such as regular tetragon and regular hexagon.
- the second holding section component 37 is of a generally rectangular parallelepiped shape, and has a thickness which is larger than that of the flat plate 36 by a predetermined amount in consideration of the diameter of the handle section 53 of the biopsy forceps 50.
- the second holding section component 37 has one side surface 32b which is configured to be positioned generally tangent to the outer circumference of the flat plate 36 when the treatment instrument holding section 32 is assembled as shown in FIG. 6.
- the second holding section component 37 has a handle mounting groove 37a to form the handle mounting hole 32a in which the handle section 53 is mounted at side of the dividing surface.
- the handle mounting groove 37a includes a handle resting groove 37b and groove for rotatable holding 37c.
- a projection 56 on the handle section 53 In the groove for rotatable holding 37c is placed a projection 56 on the handle section 53.
- the groove for rotatable holding 37c prevents the handle section 53 from dropping off in a longitudinal axial direction of the treatment instrument holding section 32.
- the handle mounting groove 37a has a dimension larger than the outer dimension of the handle section 53 so that the handle section 53 can be fitted in the groove for rotatable holding 37c with a play between the handle section 53 and the groove for rotatable holding 37c. This allows the handle section 53 to be rotatably placed relative to the treatment instrument holding section 32. It should be noted that, if the handle section 53 has a recess instead of the projection 56, the handle mounting groove 37a is provided with a projection for rotatable holding instead of the groove for rotatable holding 37c.
- the internal dimension of the recess 38c is determined in consideration of an elasticity of the sheath 52 as described above, when the sheath 52 is wound and stored in the recess 38c, the elasticity of sheath 52 makes the sheath 52 unwound and stretched outward in a direction in which the winding of the sheath 52 is released, resulting in that the sheath 52 is pushed against the storage surface 38d to be in contact with the storage surface 38d.
- the recess 38c has a depth D which is determined in consideration of a diameter and a length of the sheath 52. Specifically, with the wound and laminated sheath 52 in contact with the storage surface 38d of the recess 38c, there is a relationship between a height H of the wound sheath and the depth D as follows: H ⁇ D and D ⁇ H
- This relationship allows the sheath 52, contained in the recess 38c after wound up, to be stably stored in the recess 38c of the sheath storing section 31 with being in a close contact with the storage surface 38d.
- the sheath 52 can have an extracted shape of gently curved line without the extracted shape adjusting section 38b. This eliminates the extracted shape adjusting section 38b, and the first member 34 includes only the sheath extracting section 33.
- Reference numeral 38e designates a contact surface disposed on the placement surface 36b.
- the first holding section component 39 is of a generally rectangular parallelepiped shape similar to that of the second holding section component 37.
- the first holding section component 39 has a handle mounting groove 39a formed on the dividing surface side to form the handle mounting hole 32a in which the handle section 53 of the biopsy forceps 50 is mounted.
- the handle mounting groove 39a is configured in the same way as the handle mounting groove 37a in the second holding section component 37, and has a handle mounting groove 39b and a groove for rotatable holding 39c having a configuration similar to that in the second holding section component 37 respectively.
- a worker assembling the cartridge sterilizes and prepares the biopsy forceps 50, the first member 34, the second member 35 for the case body 30, and the like.
- the worker extracts the tip end 52a of the sheath 52, where the tissue sampling section 51 of the biopsy forceps 50 is located, outward through the extracting hole 33a from the side of the recess 38c of the tubular member 38. Then the worker winds up the sheath 52 of the biopsy forceps 50, and puts the sheath 52 into the recess 38c with the elasticity of the sheath 52 which pushes the sheath 52 against the storage surface 38d of the recess 38c, and places the handle section 53 into the handle mounting groove 39a.
- the worker places the second member 35 with respect to the first member 34 in a predetermined way. That is, the worker places the placement surface 36b to the contact surface 38e in a predetermined way.
- the worker integrally fixes the first member 34 and the second member 35, for example by using an adhesive.
- the case body 30 including the sheath storing section 31 and the treatment instrument holding section 32, as shown in FIG. 1, FIG. 5,and FIG. 6, is assembled.
- the sheath 52 is wound in layers, and stored in the case body 30 with being pressed against the storage surface 38d which extends in a vertical direction from the guiding plane 36a of the sheath storing section 31 of the case body 30.
- the tip end 52a of the sheath 52 is placed centrally of the case body 30. While, the base end 52b of the sheath 52 located near the handle section 53 is placed in contact with the storage surface 38d and the guiding plane 36a, and the middle part of the sheath 52 is wound up in close contact with the storage surface 38d.
- the sheath 52 which is wound in layers, contacts the guiding plane 36a at the top layer position, and then is extended outward through the extracting hole 33a.
- the sheath part 52 which extends downward from the storage side opening of the extracting hole 33a to contact once the guiding plane 36a and then extends upward to the storage surface 38d, forms an extracted shape of a gentle radius of curvature 52R.
- the curved shape of the curvature is determined by the positions of the extracting hole 33a and the handle mounting hole 32a, and the radius of the curvature 52R changes depending on an elasticity of the sheath 52 and an inner dimension and a depth D of the recess 38c.
- the dividing surfaces are integrally fixed by adhering or fusion bonding.
- the configuration of the case body 30 in not limited to this, and the first member 34 and the second member 35 may be integrally fixed by using a fastening member such as a screw.
- an 0 ring may be provided to the dividing surfaces as a watertight member to obtain a hermetically fixed configuration.
- An O ring may be provided even when the dividing surfaces are integrally fixed by adhering or fusion bonding, in order to obtain watertightness.
- the first member 34 has a recess 38c to form the case body 30.
- the second member 35A may have a recess 36c.
- the second member 35A includes a guiding plane 36a, a tubular member 36A having a recess 36c, and a second holding section component (not shown) which is configured in the same way as the first holding section component.
- the recess 36c has a storage surface 36d which is the internal surface of the recess 36c and extends in a vertical direction from the guiding plane 36a.
- the first member 34A is formed into a tubular member 38A which includes a flat plate 38g having a resting surface 38f instead of the storage space defining section 38a having the recess 38c, the extracted shape adjusting section 38b, and the sheath extracting section 33.
- a contact surface 36e located at a tip end of the tubular member 36A is placed to be integrally fixed, resulting in a formed sheath storing section.
- each of the first member and second member may have a recess so that the recesses in each member can be combined to form a sheath storing section.
- the projected sheath 52 is extracted through the extracting hole 33a.
- a guiding position 52p which moves from the storage surface 38d toward the guiding plane 36a moves counterclockwise from the position shown by a solid line, as shown by an arrow.
- the layers of the sheath 52 are decreased.
- the sheath 52 is placed in contact with the storage surface 38d due to the elasticity of the sheath 52. So the extracted shape of the sheath 52 has a curvature 52R having a shape shown by the solid line which is generally similar to that when the wound sheath 52 is contained in the sheath storing section 31.
- the bottom layer of the sheath 52 that is, a part of the sheath 52 which is placed on the guiding plane 36a in contact with the storage surface 38d, is finally to be extracted.
- the sheath 52 is continuously further extracted. Then, as shown in FIG. 11B, FIG. 11C, and FIG. 11D, with the curvature 52R being maintained in the generally similar shape, the guiding position 52p moves counterclockwise as shown by an arrow as described above. In this way, the entire sheath 52 in the sheath storing section 31 is extracted. At this point, a part of the sheath 52 which extends from the handle section 53 in the handle mounting hole 32a and directs toward the extracting hole 33a has a generally linear extracted shape, as shown in FIG. 11E and FIG. 12.
- a receipt of the sheath 52 into the sheath storing section 31 is started.
- a part of the sheath 52 nearer the base end thereof moves toward the guiding plane 36a little by little.
- the linear shape of the sheath 52 changes into a curvature 52r. This means, as the more sheath 52 is contained in the sheath storing section 31, a part of the sheath 52 nearer the base end thereof is brought in contact with the storage surface 38d and the guiding plane 36a due to its elasticity and the like.
- the sheath 52 is sequentially stored against the storage surface 38d clockwise as shown in FIG. 11D, FIG. 11C, and FIG. 11B. After the sheath 52 is contained and forms a wound circle, the more sheath 52 is contained in the sheath storing section 31 to be wound on the wound sheath 52 in another layer as shown in FIG. 11A, resulting in the completely stored sheath 52 as shown in FIG. 6 and FIG. 8.
- a sheath of a treatment instrument having a predetermined elasticity is contained in the sheath storing section.
- An inner dimension and a depth of a recess of the sheath storing section are set in consideration of the elasticity, a diameter, and a length of the sheath. This enables an elongated sheath of a treatment instrument to be stably contained in a sheath storing section.
- a storage case of this embodiment includes an extracting hole formed therein, through which a sheath of a treatment instrument having a predetermined elasticity is extracted, and a handle mounting hole formed therein, in which a handle section of the treatment instrument is mounted and also from which the sheath extends.
- the extracting hole and the handle mounting hole are arranged in the storage case so that the central axis of the extracting hole and the central axis of the handle mounting hole are positioned in a predetermined relationship to each other. That is, these two holes are arranged so that a direction in which the sheath is extended from the extracting hole does not coincides with a direction in which the sheath is extended from the handle section, but these two directions intersect with each other.
- This arrangement allows an extracted shape of the sheath, which extends downward from the storage side opening of the extracting hole to contact once the guiding plane and then extends upward to the storage surface, to be defined to be a gentle radius of curvature which curves in a constant direction.
- a pulling of the sheath contained in the sheath storing section of the storage case with a uniform pressure causes the sheath to be smoothly extracted outward
- a pushing of the sheath extracted out of the sheath storing section with a uniform pressure causes the sheath to be smoothly pushed down to be stored in a predetermined wound state.
- This configuration achieves a storage case which can be manufactured at a lower cost because the sheath can be wound and contained in a sheath storing section without a rotating drum for winding the sheath in the sheath storing section.
- reference numeral 8 in FIG. 4 designates a protective cap.
- the protective cap 8 may be press-fitted to an outer circumferential surface of the sheath extracting section 33.
- the protective cap 8 mounted to the sheath extracting section 33 as shown in FIG. 7 and FIG. 8 can keep the tip end portion of the sheath 52 extended from the extracting hole 33a and the tissue sampling section 51 separated from the exterior environment.
- the treatment instrument cartridge 9 is provided to a user after sterilization with the sterilized protective cap 8 provided thereto, for example in a sterilized bag.
- the biopsy forceps 50, and the first member 34 and the second member 35 of the case body 30, all of which are already sterilized, are prepared for assembly, but these components may be first assembled into the treatment instrument cartridge 9, and then be sterilized to be put into a sterilized bag.
- a staff In performing a surgical operation, a staff prepares one or more treatment instrument cartridges 9 having a treatment instrument which is suitable to the purpose of the surgical operation. A staff places the treatment instrument cartridges 9 at a predetermined position in an operation room. A staff also places a coupling tube 6 having an electric advancing and retracting device 40 at one end thereof, and an operation instructing device 2 near the treatment instrument cartridge 9. It should be noted that the operation instructing device 2 is electrically connected to the controlling device 20.
- the operator informs a staff that request during an examination using an endoscope. Then the staff removes the protective cap 8 on the treatment instrument cartridge 9, which is placed in a cart (not shown), from the sheath extracting section 33, and inserts the exposed tissue sampling section 51 and the tip end portion of the sheath 52 into the housing 41 of the electric advancing and retracting device 40. After the insertion, the staff inserts the tissue sampling section 51 and the tip end portion of the sheath 52 between the rollers 43a and 43b and through a slit 42c in the forceps plug 42b to the inside of the coupling tube 6. Then the staff passes the other end of the coupling tube 6 to the operator. The operator connects the tip end of the coupling tube 6 into the opening for treatment instrument 12b, and operates the operation instructing device 2 at hand to introduce the sheath 52 and the like into a body cavity.
- any leak of body fluid and the like in the coupling tube 6 to the exterior environment can be prevented in the insertion or retraction of the sheath 52.
- the operator After the tissue sampling is completed, the operator performs an operation with his/her hand to cause the sheath 52 to be retracted. This operation causes the rollers 43 to rotate in the direction opposite to the one described above, which makes the sheath 52 and the tissue sampling section 51 retract through the treatment instrument channel 11e.
- the operator stops the retraction of the sheath 52.
- the sheath 52 is wound and contained in the sheath storing section 31 of the case body 30 as shown in FIGS. 11D to 11A.
- the operator disconnects the tip end of the coupling tube 6 from the opening for treatment instrument 12b.
- the coupling tube 6 is passed to a staff from the operator with the tissue sampling section 51 being positioned in the part of the coupling tube 6 nearer the tip end thereof.
- the staff draws back the tissue sampling section 51 from the coupling tube 6, and performs remained procedures on the sampled tissue in a container such as a beaker which a staff prepared beforehand.
- the staff operates the operation instructing device 2 to cause the sheath 52 to be further retracted so that the tissue sampling section 51 is disengaged from the rollers 43a and 43b in the housing 41.
- an operator connects the coupling tube 6, to which the electric advancing and retracting device 40 is connected, into the opening for treatment instrument 12b, and then the operator inserts the tissue sampling section 51 and the tip end portion of the sheath 52 into the housing 41 of the electric advancing and retracting device 40.
- one end of the coupling tube 6, opposite to the end to which the electric advancing and retracting device 40 is connected may be connected into the opening for treatment instrument 12b beforehand.
- the treatment instrument before use can be placed and left unattended in a sterile condition at a position close to an operator or in an operation room, and the treatment instrument after use can be immediately moved away from the operator and be left unattended. Even during the treatment instrument is left unattended, the sheath cannot come loose in spite of its elasticity, which eliminates any accidental hanging down of the sheath to a floor.
- the treatment instrument cartridge is positioned close to an operating portion of an endoscope when the treatment section of the treatment instrument and the sheath are introduced into a treatment instrument channel of an endoscope. So the treatment section of the treatment instrument can be introduced into a body cavity with a minimum extension of the sheath outward. This surely prevents the sheath from touching a floor due to a long extension thereof, and an operator can introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel alone by himself/herself.
- the coupling tube is coupled to the opening for treatment instrument of an endoscope at one end thereof, and to the main body of the electric advancing and retracting device disposed in a sheath extracting section of a storage case at the other end thereof.
- This configuration enables the treatment section of a treatment instrument and the sheath which are extracted from the sheath storing section of a treatment instrument cartridge to be inserted through a treatment instrument channel via the coupling tube without any exposure to the exterior environment when the treatment instrument is introduced into a body cavity.
- the treatment instrument is the biopsy forceps 50, but the treatment instrument is not limited to this, and may be a high-frequency snare, a contrast tube, a basket forceps, and the like.
- FIG. 13 a second embodiment of the present invention will be explained.
- An endoscope system 1A of this embodiment includes an operation instructing device 2, an endoscope 10, a controlling device 20, a treatment instrument cartridge 9 in which a sheath 52 of a treatment instrument 50 is contained in a sheath storing section 31 of a case body 30, and an electric advancing and retracting device 40 as described above, and an electric operation device 60 as well.
- the ring retaining section 62 includes a ring stand 62a and a projected section 62b.
- the ring stand 62a is fixed to the base body 61.
- the finger engaging ring 54 of the handle section 53 has the hole 54a formed therein which is arranged on the projected section 62b. This configuration makes the handle section 53 fixedly held in the electric operation device 60.
- the motor is controlled, for example by a foot switch 69 which is electrically connected to the controlling device 20, to drive the rack 65 to move. That is, a driving of the motor causes the slider 55 which is held by the slider holding section 63 at the rack 65 to move forward or backward along the axis of the handle section 53. As the slider 55 moves forward or backward, an operation wire in the biopsy forceps 50 is moved to open or close the tissue sampling section 51. Specifically, an operation of a switch 69a on the foot switch 69 by an operator causes the tissue sampling section 51 to be opened, and an operation of a switch 69b on the foot switch 69 by an operator causes the tissue sampling section 51 to be closed.
- the main body 3 and the grip 4 of the operation instructing device 2 have a groove for attachment 2b formed therein.
- the groove for attachment 2b is formed to integrally attach the operation instructing device 2 to the inserting portion 11.
- the operation instructing device 2 and the inserting portion 11 are generally combined as a unit.
- the handle section 53 is placed on the electric operation device 60.
- the case body 30 has a sheath inserting hole 32c formed therein, instead of the handle mounting hole 32a.
- the sheath inserting hole 32c is a second through-hole configured to serve as a second defining section from which the sheath 52 extends in a predetermined direction. A part of the sheath 52 is fixed in the sheath inserting hole 32c to prevent any movement in an axial direction.
- Other configuration of the endoscope system 1A is similar to the first embodiment, and members which are the same or similar to those in the first embodiment are designated with like reference numerals, and will not be explained in detail below.
- a staff prepares one or more treatment instrument cartridges 9 having a treatment instrument which is suitable to the purpose of the surgical operation.
- the staff places the treatment instrument cartridges 9 at a predetermined position in an operation room.
- the staff also places a coupling tube 6 having an electric advancing and retracting device 40 at one end thereof, an electric operation device 60, a foot switch 69, and an operation instructing device 2 near the treatment instrument cartridge 9.
- a signal cable 2a of the operation instructing device 2 a signal cable 60a of the electric operation device 60, and a signal cable 69c of the foot switch 69 are electrically connected to the controlling device 20 beforehand.
- a handle section of the treatment instrument which will be used first in the surgical operation, is placed in the electric operation device 60 beforehand.
- the operator connects the other end of the coupling tube 6 into the opening for treatment instrument 12b, as in the first embodiment. Also, the operator removes a protective cap 8 on the treatment instrument cartridge 9 from a sheath extracting section 33, and inserts the exposed tissue sampling section 51 and the tip end portion of the sheath 52 into the housing 41 of the electric advancing and retracting device 40 to place the tissue sampling section 51 and the tip end portion of the sheath 52 in the coupling tube 6.
- the operator performs a tissue sampling.
- the operator manipulates the operation instructing device 2 to cause the tissue sampling section 51 to be advanced or retracted, and simultaneously manipulates the switches 69a and 69b of the foot switch 69 to cause the tissue sampling section 51 to be opened and closed.
- the motor for driving the rack may be controlled by an operation hand switch which is provided to the operation instructing device 2, instead of the foot switch 69.
- the operator manipulates the operation instructing device 2 to cause the rollers 43 to rotate in the direction opposite to the one described above, which makes the sheath 52 and the tissue sampling section 51 retract through the treatment instrument channel 11e and the coupling tube 6.
- the tissue sampling section 51 is disengaged from the rollers 43a and 43b in the housing 41.
- the sheath 52 is wound and contained in the sheath storing section 31 as shown in FIGS. 11D to 11A.
- a staff takes away the housing 41 of the electric advancing and retracting device 40 from the sheath extracting section 33, and attaches the protective cap 8 to the sheath extracting section 33, and also removes the handle section 53 of the biopsy forceps 50 from the electric operation device 60. This prevents the sheath 52 and the tissue sampling section 51 which are inserted into the body cavity once from being exposed to the exterior environment, and keeps them stored inside.
- a handle section of a new treatment instrument mounted in the treatment instrument cartridge 9 is placed in the electric operation device 60, and a treatment section of the treatment instrument and a sheath tip end portion of the new treatment instrument mounted in the treatment instrument cartridge 9 are introduced through the coupling tube 6, which is connected into the opening for treatment instrument 12b, into the body cavity for a treatment.
- the case body 30 has a sheath storing section 31 in which the sheath 52 of the biopsy forceps 50 is contained.
- the configuration of the treatment instrument cartridge is not limited to those in the embodiments, and a treatment instrument such as the sheath 52 of the biopsy forceps 50 may be contained in a case body 30A shown in FIG. 14 and FIG. 15 to form a treatment instrument cartridge 9A.
- the fixing plate 72 may be a cylindrical member having a diameter the size of which is larger than a thickness thereof, and has flat surfaces, that is, guiding planes 72a against which the sheath 52 abuts.
- the fixing plate 72 has a pair of circumferential grooves 72b formed at its outer periphery. To the circumferential grooves 72b, an engaging section (designated by reference numeral 71g which will be explained below) on the tubular member 71 is engagedly inserted.
- the shape of the fixing plate 72 is not limited to a cylinder having a circular cross section, and may be a rectangular cylinder having a regular tetragonal cross section, regular hexagonal cross section, and the like.
- the tubular member 71 is formed into a stepped shape, and has a storage space defining section 71 a having a larger diameter, an extracted shape adjusting section 71 b having a smaller diameter than that of the storage space defining section 71a, and a sheath extracting section 71c having a smaller diameter than that of the extracted shape adjusting section 71 b.
- the sheath extracting section 71 c has an extracting hole 71 d formed therein.
- the extracting hole 71d is a first through-hole out of which the stored sheath 52 is extracted.
- the storage space defining section 71 a has a generally same outline shape as that of the flat plate 72.
- the storage space defining section 71 a, the extracted shape adjusting section 71 b, and the sheath extracting section 71c are concentrically arranged.
- the extracting hole 71d is positioned centrally of the sheath extracting section 71 c.
- the storage space defining section 71 a has sheath storing sections 70 which is a recess 71e formed in the storage space defining section 71a.
- the recess 71e has a storage surface 71f which is the internal surface of the recess 71e, and the sheath 52 is placed in contact with the storage surface 71f.
- Claws 71 g are provided on the internal surface of the recess 71e on the side of the opening in the storage space defining section 71 a, the claws 71g serving as the engaging section and extending toward to the center of the storage space defining section 71 a.
- the claws 71 g are configured to be engagedly inserted into the circumferential groove 72b.
- a diameter ⁇ L of the recess 71e that is the internal dimension of the recess 71e, is determined in consideration of an elasticity and a length of the sheath 52 of the biopsy forceps 50, as described above.
- the recess 71e has a depth D which is determined in consideration of a diameter, a length of the sheath 52, and also a distance W between the guiding plane 72a and the circumferential groove 72b into which the claws 71 g is engagedly inserted (hereinafter, referred to as an engaged width).
- an engaged width a distance W between the guiding plane 72a and the circumferential groove 72b into which the claws 71 g is engagedly inserted
- the extracted shape adjusting section 71b has a depth d which is determined in consideration of an elasticity of the sheath 52, as described above.
- a specific depth d is set so that, with the sheath 52 being wound and laminated in the sheath storing section 70, when the sheath 52 at the top layer contacts the guiding plane 72a and reaches the extracting hole 71d, the sheath 52 has a shape of a curved line having a gentle radius of curvature, as described above.
- the tubular member 71 may include only the sheath extracting section 71 c without the extracted shape adjusting section 71b.
- the sheath extracting sections 73 have a defining hole 73a formed therein which is a second through-hole configured to serve as a second defining section.
- the defining hole 73a in the sheath extracting sections 73 defines a direction in which the sheath 52 is inserted into the sheath storing sections 70 as predetermined when the sheath 52 passes through the defining hole 73a.
- the sheath extracting sections 73 are integrally formed on the outer circumferential surface of the storage space defining section 71 a, or formed as another member and integrally fixed on the outer circumferential surface of the storage space defining section 71a by using adhesive for example.
- the extracting hole 71d of the case body 30A is configured to have a central axis which intersects with the guiding plane 72a at a right angle.
- the defining hole 73a is arranged so that the sheath 52, which is wound along the storage surface 71f, that is the inner surface, of the recess 71e and the guiding plane 72a, can be extended to be wound around the outer circumferential surface of the fixing plate 72 without any bending.
- a plane including the central axis of the extracting hole 71d and the plane including the central axis of the defining hole 73a are arranged to intersect with each other at a right angle, while the central axis of the extracting hole 71d and the central axis of the defining hole 73a are arranged not to intersect with each other.
- the central axis of the defining hole 73a is arranged so that the plane including the central axis is parallel to the guiding plane 72a.
- the central axis of the defining hole 73a is arranged to be tangent to an imaginary circle around the central axis of the extracting hole 71 d.
- a predetermined length of the sheath 52 which has the tissue sampling section 51 is wound and contained in one of the sheath storing sections 70, while a predetermined length of the sheath 52 which has the handle section 53 is wound and contained in the other sheath storing section 70.
- a sheath fixing section may be provided in the tube 74 to restrain the movement of the sheath 52.
- the tissue sampling section 51 can be extracted, and also the handle section 53 can be placed at any position with a suitable length of the sheath 52 in one of the sheath storing sections 70 being extracted, as described above.
- a length of the sheath 52 contained in one of the sheath storing sections 70 and a length of the sheath 52 contained in the other sheath storing section 70 can be adjusted as needed so that an extended length of the tissue sampling section 51 is changed.
- the cartridge in this embodiment has two sheath storing sections. Into one of the sheath storing sections, a length of the sheath is wound and contained in consideration of how far the tissue sampling section is introduced into a body cavity, and into the other sheath storing section, a length of the sheath is wound and contained in order to allow a handle section of the sheath to move.
- This configuration enables an adjustment of an extracted length of the tissue sampling section as needed for a medical procedure.
- a handle section of a treatment instrument can be placed at a position desired by an operator or the like for a medical procedure by extracting the sheath contained in the other sheath storing section.
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Abstract
Description
- The present invention relates to an endoscope system, comprising an endoscope, a treatment instrument used with the endoscope, and a storage case for containing an elongated treatment instrument inserting portion of the treatment instrument.
- In recent years, an endoscope is widely used in the medical field. An endoscope in the medical field has an inserting portion which is inserted into a body cavity of a subject for observation. The inserting portion of the endoscope is provided with a treatment instrument channel through which a treatment instrument is introduced into the body cavity for various procedures.
- When an operator performs a medical procedure by inserting a treatment instrument into a treatment instrument channel of an endoscope, the operator introduces the treatment instrument through the treatment instrument channel into a body cavity. During the introduction, the operator holds the endoscope at its operating portion with one hand. So, in order to insert the treatment instrument through the treatment instrument channel, the operator needs to hold, with the other hand, a sheath which is an introducing section of the treatment instrument, and manually inserts the sheath into the treatment instrument channel. The sheath is held at its base end by a staff such as a nurse. Such holding is necessary to keep a part of the sheath, having a length of 2 m for example, from touching dirty areas including floor during the insertion.
- On the other hand, when an operator samples a body tissue for example with a treatment instrument, the operator holds the endoscope at its operating portion with one hand. In this state, the operator cannot operate an operating portion of the treatment instrument with the other hand holding an inserting portion of the endoscope. So a staff holds the endoscope inserting portion, or operates the treatment instrument operating portion.
- This means a help by a staff is required in inserting a sheath of a treatment instrument into a treatment instrument channel of an endoscope, and operating the treatment instrument.
- For example,
Japanese Patent Application Laid-Open No. 2004-208961 -
Japanese Patent Application Laid-Open No. 2005-334132 - A first object of the present invention is to provide an endoscope system including a treatment instrument cartridge in which an elongated sheath of the treatment instrument is contained in a sheath storing section in a stable state, and the treatment instrument before use can be placed and left unattended in a sterile condition at a position close to an operator or in an operation room, and the treatment instrument after use can be immediately moved away from the operator and be left unattended.
- A second object of the present invention is to provide an endoscope system which allows an operator to introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel alone by himself/herself with a minimum extension of the sheath outward.
- A third object of the present invention is to provide an endoscope system in which a treatment section and a sheath can be inserted into a body cavity by allowing the treatment section and the sheath which are extracted from the sheath storing section of a treatment instrument cartridge to be inserted through a treatment instrument channel via a coupling tube without any exposure to the exterior environment.
- A fourth object of the present invention is to provide an endoscope system which allows an operator to introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel, and to sample a tissue by manipulating the tissue sampling section for its opening and closing while manipulating the tissue sampling section for its advancement and retraction, alone by himself/herself.
- An endoscope system according to the present invention comprises an endoscope, a treatment instrument cartridge, an advancing and retracting device, a controlling device, and an operation instructing device. The endoscope includes an inserting portion which has a treatment instrument channel formed therein. The treatment instrument cartridge includes a treatment instrument and a storage case. The treatment instrument has a treatment instrument inserting portion having an elasticity which is inserted through the treatment instrument channel, a treatment section at a tip end of the treatment instrument, an operating portion at a base end of the treatment instrument. The storage case includes an inserting portion storing section for winding up the treatment instrument inserting portion, an extension port from which the tip end of the wound treatment instrument inserting portion is extended, a holding section for holding a part of the treatment instrument inserting portion nearer the base end or the operating portion. The advancing and retracting device has a driving power source, and is displaced between the treatment instrument channel and the extension port. The controlling device is electrically connected to the driving power source, and controls an operation of the driving power source. The operation instructing device issues an instruction on an operation of the driving power source to the controlling device.
- The above and other objects, features and advantages of the invention will become more clearly understood from the following description referring to the accompanying drawings.
-
- FIG. 1 is a view illustrating an entire configuration of an endoscope system according to a first embodiment;
- FIG. 2 is a longitudinal cross sectional view showing an internal configuration of an electric advancing and retracting device;
- FIG. 3 is a lateral cross sectional view showing an internal configuration of an electric advancing and retracting device;
- FIG. 4 is an exploded perspective view illustrating a storage case and a treatment instrument of a treatment instrument cartridge, and an electric advancing and retracting device;
- FIG. 5 is a perspective view illustrating a configuration of a storage case, and a perspective view illustrating a treatment instrument cartridge;
- FIG. 6 is a top plan view showing the storage case and the treatment instrument cartridge of FIG. 4;
- FIG. 7 is a cross sectional view taken along the VII-VII line in FIG. 6;
- FIG. 8 is a cross sectional view taken along the VIII-VIII line in FIG. 6;
- FIG. 9 is a view illustrating an arrangement of a treatment instrument in a storage case;
- FIG. 10 is a view showing an exemplary configuration of a storage case having a different dividing plane;
- FIG. 11A is a view illustrating a state in which a wound sheath in a storage case is about to be extracted out;
- FIG. 11B is a view illustrating a state in which the sheath disposed on a guiding plane of the storage case is being extracted out;
- FIG. 11C is a view illustrating a state in which the sheath disposed on a guiding plane of the storage case is further extracted out;
- FIG. 11D is a view illustrating a state in which the sheath disposed on a guiding plane of the storage case is even further extracted out;
- FIG. 11E is a view showing a state in which the entire sheath in the storage case is extracted out;
- FIG. 12 is a cross sectional view taken along the XII-XII line in FIG. 11E;
- FIG. 13 is a view illustrating an entire configuration of an endoscope system according to a second embodiment;
- FIG. 14 is a perspective view illustrating another configuration of a storage case; and
- FIG. 15 is a longitudinal cross sectional view of the storage case of FIG. 14.
- Now, several embodiments of the present invention will be explained below with reference to accompanying drawings.
- Referring to FIGS. 1 to 12, a first embodiment of the present invention will be explained.
- As shown in FIG. 1, an
endoscope system 1 generally comprises anoperation instructing device 2, anendoscope 10, a controllingdevice 20 which serves as a light source device and a video processor, atreatment instrument 50, a storage case (hereinafter, referred to as a case body) 30 in which thesheath 52 which is a treatment instrument inserting portion of thetreatment instrument 50 is contained, and an electric device for advancing and retracting a treatment instrument inserting portion (hereinafter, referred to as an electric advancing and retracting device) 40 which is an advancing and retracting device. It should be noted that in this embodiment, atreatment instrument cartridge 9 is comprised with thecase body 30 which contains at least the treatment instrument inserting portion of thetreatment instrument 50. - The
operation instructing device 2 is of a generally cylindrical shape, and includes a rigidmain body 3, and agrip 4 which may be an elastic member coupled to themain body 3. Themain body 3 and thegrip 4 are integrally formed as a unit by fitting a fitting projection (not shown) which extends from a central portion of a base end surface of themain body 3 into a fitting hole (not shown) which is formed in a tip end surface of thegrip 4. Asignal cable 2a extends from a base end of thegrip 4. Thesignal cable 2a is electrically connected to the controllingdevice 20 at a base end thereof. - The
main body 3 has a circumferential surface on which anoperation instructing section 5 is provided. On the other hand, thegrip 4 includes a grip section 4a which has a concavo-convex profile. This profile allows an operator to hold theoperation instructing device 2 without fail when the operator holds the grip section 4a. The grip section 4a is provided on the other side of circumferential surface of thegrip 4 relative to theoperation instructing section 5 of themain body 3. - As for the
operation instructing device 2 configured in this way, in the following description, a tip end of theoperation instructing device 2 means the tip end surface of themain body 3, and a base end of theoperation instructing device 2 means the base end surface of thegrip 4. - The
operation instructing section 5 may be a joy stick type ofoperation lever 5a, for example. When an operator pushes theoperation lever 5a toward the tip end of theoperation instructing device 2, an instruction signal to cause thesheath 52 to be advanced is output from theoperation instructing section 5 to thecontrol section 21 of the controllingdevice 20. In addition, when an operator pulls theoperation lever 5a toward the base end of theoperation instructing device 2, an instruction signal to cause thesheath 52 to be retracted is output from theoperation instructing section 5 to thecontrol section 21 of the controllingdevice 20. - The
endoscope 10 comprises an insertingportion 11, and an operatingportion 12, and auniversal cord 13. The operatingportion 12 also serves as a holding section, and is provided at a base end of the insertingportion 11. Theuniversal cord 13 extends from a side of the operatingportion 12 to be connected to the controllingdevice 20 at a base end thereof. - The inserting
portion 11 comprises, in order from a tip end thereof, a rigidtip end section 11a, abendable bending section 11b, and aflexible tube section 11c having a flexibility. Thetip end section 11a has atip end opening 11d formed therein. The operatingportion 12 is provided with aprotection hood portion 12a having a base end of theflexible tube section 11a connected thereto. The operatingportion 12 includes an opening fortreatment instrument 12b at its tip end, and includes an air/water supplying button 14a for supplying air/water, asuction button 14b for suctioning, bendingcontrol knobs bending section 11b, andvarious switches 16 for controlling endoscope images which are caught by an image capturing device at thetip end 11a at its base end. - It should be noted that the inserting
portion 11 of theendoscope 10 also includes atreatment instrument channel 11e which is in communication between the opening fortreatment instrument 12b and thetip end opening 11d. - The controlling
device 20 includes thecontrol section 21, a lamp which emitting an illumination light (not shown), a signal processing circuit (not shown), and the like. The signal processing circuit generates a driving signal to drive an image capturing device such as CCD (not shown) which is located to the tip end of the endoscope, converts an electrical signal transmitted from the image capturing device into an image signal, and the like. The controllingdevice 20 is connected with a displaying apparatus such as a liquid crystal display (not shown) for displaying an endoscope image. - The
treatment instrument 50 may be for example a biopsy forceps (hereinafter, referred to as a biopsy forceps 50), and includes asheath 52 which is a flexible tube member having a predetermined flexibility. Thesheath 52 includes atissue sampling section 51 at a tip end side of atip end 52a thereof as a treatment section. Thetissue sampling section 51 includes a pair of closable and openable biopsy cups. Through thesheath 52 of thebiopsy forceps 50, an operation wire (not shown) is inserted. The operation wire is controlled to be advanced or retracted by an operation of ahandle section 53. And the advancement or retraction of the operation wire corresponding to an operation of ahandle section 53 causes thetissue sampling section 51 to move from its open position to its closed position, and vice versa. Thehandle section 53 includes afinger engaging ring 54 and aslider 55. Thefinger engaging ring 54 has ahole 54a formed therein to which an operator's thumb for example may be engaged. Theslider 55 has a pair offlanges 55a to which an operator's second and third fingers may be engaged. - The
case body 30 is a storage case for containing thesheath 52 therein, and includes asheath storing section 31, a treatmentinstrument holding section 32, and asheath extracting section 33. Thesheath storing section 31 is a storing space in which asheath 52 is contained. - Specifically, the
sheath storing section 31 is configured with afirst member 34 having a recess for the storing space (which is designated 38c in FIG. 7 described below) and asecond member 35 disposed to cover an opening of the recess, which are integrally fixed to each other. - The treatment
instrument holding section 32 has ahandle mounting hole 32a formed therein, in which thehandle section 53 of thebiopsy forceps 50 is mounted. Thehandle mounting hole 32a is a second through-hole which defines a direction in which a part of thesheath 52 nearer at thebase end 52b is extracted as predetermined, and is configured to serve as a second defining section. - A
sheath extracting section 33 is provided at the center of thefirst member 34 as a projected portion. Thesheath extracting section 33 has an extractinghole 33a formed therein. The extractinghole 33a is an extension port to which the storedsheath 52 in the storing space is extracted out of thecase body 30. In other words, the extractinghole 33a is a first through-hole constituting an insertion port, and is configured to serve as a first defining section. - In this embodiment, the extracting
hole 33a and thehandle mounting hole 32a in thecase body 30 are provided so that, as shown in FIG. 5, a plane 33P including the central axis of the extractinghole 33a and the plane 32P including the central axis of thehandle mounting hole 32a intersect with each other at a right angle, while the central axis of the extractinghole 33a and the central axis of thehandle mounting hole 32a do not intersect with each other. - This means the central axis of the extracting
hole 33a does not intersect with the central axis of thehandle mounting hole 32a, but intersects with a guidingplane 36a at a generally right angle, while the central axis of thehandle mounting hole 32a is parallel to the guidingplane 36a. Thus, thesheath extracting section 33 is mounted at a right angle relative to the guidingplane 36a. The treatmentinstrument holding section 32 is mounted parallel to the guidingplane 36a. It should be noted that in this configuration, the central axis of the extractinghole 33a and the central axis of thehandle mounting hole 32a do not intersect with each other. - In addition, in this embodiment, the central axis of the
handle mounting hole 32a is a line tangent to an imaginary circle 33S around a point at the intersection of the central axis of the extractinghole 33a on the guidingplane 36a, as shown by two-dot chain line in FIG. 6. Therefore, when thecase body 30 is seen from the direction shown by an arrow in FIG. 5, the central axis of the extractinghole 33a and the central axis of thehandle mounting hole 32a intersect with each other at a right angle. - The electric advancing and retracting
device 40 is removably mounted tosheath extracting section 33 of thecase body 30. The electric advancing and retractingdevice 40 is electrically connected to the controllingdevice 20 via anelectrical cable 40a in which a signal line is inserted. The electric advancing and retractingdevice 40 causes thesheath 52 of thebiopsy forceps 50 to be advanced or retracted based on an operation of theoperation lever 5a on theoperation instructing device 2. - It should be noted that
reference numeral 6 designates a coupling tube. Thecoupling tube 6 has one end which is mounted to the opening fortreatment instrument 12b, and the other end mounted to the electric advancing and retractingdevice 40. Therefore, thesheath 52 extracted out of thecase body 30 is introduced into thetreatment instrument channel 11e via thecoupling tube 6. - Now, referring to FIG. 1, FIG. 2, and FIG. 3, the electric advancing and retracting
device 40 will be explained below. - As shown in FIG. 2, the
sheath extracting section 33 has an extractinghole 33a which is in communication between the exterior and the inside of thesheath storing section 31. Thesheath extracting section 33 includes a mountingsection 33b on which the electric advancing and retractingdevice 40 is mounted. - As shown in FIG. 1, FIG. 2, and FIG. 3, the electric advancing and retracting
device 40 has ahousing 41 which is provided with tworotatable rollers housing 41 includes surfaces facing each other, and one of the surfaces has asheath inserting hole 41 a formed therein through which thesheath 52 passes after extracted out of thesheath extracting section 33. Surrounded thesheath inserting hole 41 a is acouplable fixing section 41 b for coupling thehousing 41 to a mountingsection 33b. Thecouplable fixing section 41b is configured to be hermetically connected to the mountingsection 33b. - The other surface of the
housing 41 has a treatmentinstrument inserting portion 42 formed therein through which thesheath 52 is inserted after passed thesheath inserting hole 41 a. The treatmentinstrument inserting portion 42 has a communicatinghole 42a formed therein into which aforceps plug 42b of an elastic material is placed. Theforceps plug 42b has aslit 42c formed therein through which thesheath 52 is inserted. - The two
rollers housing 41 are made of a resin material having an elasticity respectively. Therollers rotation axes sheath 52, which is inserted in thehousing 41 after passed thesheath inserting hole 41 a, is displaced between theroller 43a and theroller 43b. This arrangement makes the outer surface of thesheath 52 pressed and held between theroller 43a and theroller 43b. Therotation axis 43A is a driving axis, and an operation of amotor 44 which is a driving power source mounted in thehousing 41 causes therotation axis 43A to be rotated. To the contrary, therotation axis 43B is a driven axis which is rotatably mounted in thehousing 41. - In the above-described configuration, an operation of the
motor 44 allows thesheath 52 which is held between theroller 43a and theroller 43b to be moved corresponding to the rotation of theroller 43a. That is, thesheath 52 is advanced or retracted in thetreatment instrument channel 11e by controlling the direction in which themotor 44 is driven to rotate. Themotor 44 is controlled to be driven by thecontrol section 21 of the controllingdevice 20 based on an operation of theoperation lever 5a. - It should be noted that the rotation axes 43A and 43B are rotatably supported by side walls of the
housing 41 and a supporting plate 41 c so that the rotation axes 43A and 43B are parallel to each other and roller surfaces of therollers - Now, referring to FIG. 1 and FIGS. 4 to 7, a relationship between the
case body 30 and thetreatment instrument 50 will be explained below. - As shown in FIG. 4 and FIG. 5, the
case body 30 may be, for example, divided into two portions of thefirst member 34 and thesecond member 35. The dividing surfaces between thefirst member 34 and thesecond member 35 are integrally fixed to each other by adhering, fusion bonding, or the like. At least one of thefirst member 34 and thesecond member 35 of thecase body 30 is desirably made of a transparent or semi-transparent resin material. This allows an operator to visually check a state of thesheath 52 stored in thesheath storing section 31 through thefirst member 34 or thesecond member 35. - The
second member 35 includes aflat plate 36 and a secondholding section component 37. Theflat plate 36 may be of a circular shape, and one part of theflat plate 36 is a guidingplane 36a against which thesheath 52 abuts. It should be noted that an outer peripheral portion surrounding the guidingplane 36a is the above-described dividing surface and also aplacement surface 36b on which thefirst member 34 is placed. The shape of the flat plate is not limited to a circle, and theflat plate 36 may be of any shape including polygonal shapes such as regular tetragon and regular hexagon. - The second
holding section component 37 is of a generally rectangular parallelepiped shape, and has a thickness which is larger than that of theflat plate 36 by a predetermined amount in consideration of the diameter of thehandle section 53 of thebiopsy forceps 50. The secondholding section component 37 has oneside surface 32b which is configured to be positioned generally tangent to the outer circumference of theflat plate 36 when the treatmentinstrument holding section 32 is assembled as shown in FIG. 6. - The second
holding section component 37 has ahandle mounting groove 37a to form thehandle mounting hole 32a in which thehandle section 53 is mounted at side of the dividing surface. - The
handle mounting groove 37a includes ahandle resting groove 37b and groove forrotatable holding 37c. In the groove forrotatable holding 37c is placed aprojection 56 on thehandle section 53. The groove forrotatable holding 37c prevents thehandle section 53 from dropping off in a longitudinal axial direction of the treatmentinstrument holding section 32. Thehandle mounting groove 37a has a dimension larger than the outer dimension of thehandle section 53 so that thehandle section 53 can be fitted in the groove forrotatable holding 37c with a play between thehandle section 53 and the groove forrotatable holding 37c. This allows thehandle section 53 to be rotatably placed relative to the treatmentinstrument holding section 32. It should be noted that, if thehandle section 53 has a recess instead of theprojection 56, thehandle mounting groove 37a is provided with a projection for rotatable holding instead of the groove forrotatable holding 37c. - Meanwhile, the
first member 34 includes atubular member 38 and a firstholding section component 39. Thetubular member 38 is formed into a stepped shape, and has a storagespace defining section 38a having a larger diameter, an extractedshape adjusting section 38b having a smaller diameter than that of the storagespace defining section 38a, and thesheath extracting section 33 having a smaller diameter than that of the extractedshape adjusting section 38b. The storagespace defining section 38a has a generally same outline shape as that of theflat plate 36. In this embodiment, the storagespace defining section 38a, the extractedshape adjusting section 38b and thesheath extracting section 33 are concentrically arranged. The extractinghole 33a is positioned centrally of thesheath extracting section 33. - The storage
space defining section 38a is an inserting portion storing section, and as shown in FIG. 7 and FIG. 8, is provided with arecess 38c for asheath storing section 31. Therecess 38c has astorage surface 38d which is the internal surface of therecess 38c, and thesheath 52 is stored in therecess 38c in contact with thestorage surface 38d. So, the diameter φL of therecess 38c, that is the internal dimension of therecess 38c, is determined in consideration of a repulsion, so-called elasticity and a length of thesheath 52 of thebiopsy forceps 50. - Since the internal dimension of the
recess 38c is determined in consideration of an elasticity of thesheath 52 as described above, when thesheath 52 is wound and stored in therecess 38c, the elasticity ofsheath 52 makes thesheath 52 unwound and stretched outward in a direction in which the winding of thesheath 52 is released, resulting in that thesheath 52 is pushed against thestorage surface 38d to be in contact with thestorage surface 38d. - The
recess 38c has a depth D which is determined in consideration of a diameter and a length of thesheath 52. Specifically, with the wound andlaminated sheath 52 in contact with thestorage surface 38d of therecess 38c, there is a relationship between a height H of the wound sheath and the depth D as follows: - This relationship allows the
sheath 52, contained in therecess 38c after wound up, to be stably stored in therecess 38c of thesheath storing section 31 with being in a close contact with thestorage surface 38d. - The extracted
shape adjusting section 38b has a depth d which is determined in consideration of a repulsion of thesheath 52. A specific depth d is set so that, with thesheath 52 being wound and laminated in thesheath storing section 31, when thesheath 52 at the top layer contacts the guidingplane 36a and reaches the extractinghole 33a, thesheath 52 near the extractinghole 33a has a shape (hereinafter, referred to as an extracted shape) of a curved line having a gentle radius of curvature. In other words, the extractedshape adjusting section 38b is provided to prevent any bending of thewound sheath 52 while being advanced to the extractinghole 33a. - It should be noted that, if an inner dimension is set to be larger relative to the sheath length, the
sheath 52 can have an extracted shape of gently curved line without the extractedshape adjusting section 38b. This eliminates the extractedshape adjusting section 38b, and thefirst member 34 includes only thesheath extracting section 33.Reference numeral 38e designates a contact surface disposed on theplacement surface 36b. - As shown in FIG. 4 and FIG. 5, the first
holding section component 39 is of a generally rectangular parallelepiped shape similar to that of the secondholding section component 37. The firstholding section component 39 has ahandle mounting groove 39a formed on the dividing surface side to form thehandle mounting hole 32a in which thehandle section 53 of thebiopsy forceps 50 is mounted. Thehandle mounting groove 39a is configured in the same way as thehandle mounting groove 37a in the secondholding section component 37, and has ahandle mounting groove 39b and a groove forrotatable holding 39c having a configuration similar to that in the secondholding section component 37 respectively. - Now, steps of a procedure to assemble the
treatment instrument cartridge 9 by containing thesheath 52 of thebiopsy forceps 50 into thecase body 30 will be explained below. - First, a worker assembling the cartridge sterilizes and prepares the
biopsy forceps 50, thefirst member 34, thesecond member 35 for thecase body 30, and the like. - Next, the worker, as shown in FIG. 9, extracts the
tip end 52a of thesheath 52, where thetissue sampling section 51 of thebiopsy forceps 50 is located, outward through the extractinghole 33a from the side of therecess 38c of thetubular member 38. Then the worker winds up thesheath 52 of thebiopsy forceps 50, and puts thesheath 52 into therecess 38c with the elasticity of thesheath 52 which pushes thesheath 52 against thestorage surface 38d of therecess 38c, and places thehandle section 53 into thehandle mounting groove 39a. - Then, the worker places the
second member 35 with respect to thefirst member 34 in a predetermined way. That is, the worker places theplacement surface 36b to thecontact surface 38e in a predetermined way. The worker integrally fixes thefirst member 34 and thesecond member 35, for example by using an adhesive. Then, thecase body 30 including thesheath storing section 31 and the treatmentinstrument holding section 32, as shown in FIG. 1, FIG. 5,and FIG. 6, is assembled. - As shown in FIG. 1, FIG. 7, and FIG. 8, the
sheath 52 is wound in layers, and stored in thecase body 30 with being pressed against thestorage surface 38d which extends in a vertical direction from the guidingplane 36a of thesheath storing section 31 of thecase body 30. - As shown in FIG. 6 and FIG. 8, in the
treatment instrument cartridge 9, thetip end 52a of thesheath 52 is placed centrally of thecase body 30. While, thebase end 52b of thesheath 52 located near thehandle section 53 is placed in contact with thestorage surface 38d and the guidingplane 36a, and the middle part of thesheath 52 is wound up in close contact with thestorage surface 38d. - The
sheath 52, which is wound in layers, contacts the guidingplane 36a at the top layer position, and then is extended outward through the extractinghole 33a. Upon the extension, in thesheath storing section 31, thesheath part 52, which extends downward from the storage side opening of the extractinghole 33a to contact once the guidingplane 36a and then extends upward to thestorage surface 38d, forms an extracted shape of a gentle radius ofcurvature 52R. - It should be noted that the curved shape of the curvature is determined by the positions of the extracting
hole 33a and thehandle mounting hole 32a, and the radius of thecurvature 52R changes depending on an elasticity of thesheath 52 and an inner dimension and a depth D of therecess 38c. - In this embodiment, the dividing surfaces are integrally fixed by adhering or fusion bonding. However, the configuration of the
case body 30 in not limited to this, and thefirst member 34 and thesecond member 35 may be integrally fixed by using a fastening member such as a screw. In this case, for example, an 0 ring may be provided to the dividing surfaces as a watertight member to obtain a hermetically fixed configuration. An O ring may be provided even when the dividing surfaces are integrally fixed by adhering or fusion bonding, in order to obtain watertightness. - In this embodiment, the
first member 34 has arecess 38c to form thecase body 30. However, as shown in FIG. 10, thesecond member 35A may have arecess 36c. - In this configuration, the
second member 35A includes a guidingplane 36a, atubular member 36A having arecess 36c, and a second holding section component (not shown) which is configured in the same way as the first holding section component. Therecess 36c has astorage surface 36d which is the internal surface of therecess 36c and extends in a vertical direction from the guidingplane 36a. - To the contrary, the first member 34A is formed into a tubular member 38A which includes a
flat plate 38g having a restingsurface 38f instead of the storagespace defining section 38a having therecess 38c, the extractedshape adjusting section 38b, and thesheath extracting section 33. Onto the restingsurface 38f, a contact surface 36e located at a tip end of thetubular member 36A is placed to be integrally fixed, resulting in a formed sheath storing section. - Not shown, but each of the first member and second member may have a recess so that the recesses in each member can be combined to form a sheath storing section.
- Now, operations of the
treatment instrument cartridge 9 configured in the way described above will be explained below. - First, movements of the
sheath 52 in thesheath storing section 31, when thesheath 52 which is wound and contained in thesheath storing section 31 is extracted through the extractinghole 33a, will be explained. - As shown in FIG. 5, the projected
sheath 52 is extracted through the extractinghole 33a. As thesheath 52 is extracted outward, as shown in FIG. 11A, a guidingposition 52p which moves from thestorage surface 38d toward the guidingplane 36a moves counterclockwise from the position shown by a solid line, as shown by an arrow. As thesheath 52 is extracted outward, the layers of thesheath 52 are decreased. During the extraction, thesheath 52 is placed in contact with thestorage surface 38d due to the elasticity of thesheath 52. So the extracted shape of thesheath 52 has acurvature 52R having a shape shown by the solid line which is generally similar to that when thewound sheath 52 is contained in thesheath storing section 31. After thesheath 52 is further extracted, the bottom layer of thesheath 52, that is, a part of thesheath 52 which is placed on the guidingplane 36a in contact with thestorage surface 38d, is finally to be extracted. - The
sheath 52 is continuously further extracted. Then, as shown in FIG. 11B, FIG. 11C, and FIG. 11D, with thecurvature 52R being maintained in the generally similar shape, the guidingposition 52p moves counterclockwise as shown by an arrow as described above. In this way, theentire sheath 52 in thesheath storing section 31 is extracted. At this point, a part of thesheath 52 which extends from thehandle section 53 in thehandle mounting hole 32a and directs toward the extractinghole 33a has a generally linear extracted shape, as shown in FIG. 11E and FIG. 12. - Next, movements of the
sheath 52 in thesheath storing section 31, when thesheath 52 which is once extracted out of thesheath storing section 3 is again received in thesheath storing section 31 of thetreatment instrument cartridge 9, will be explained. - A receipt of the
sheath 52 into thesheath storing section 31 is started. As shown by a dotted line in FIG. 12, a part of thesheath 52 nearer the base end thereof moves toward the guidingplane 36a little by little. As thesheath 52 moves, as shown by a dotted line in FIG. 11E and FIG. 12, the linear shape of thesheath 52 changes into acurvature 52r. This means, as themore sheath 52 is contained in thesheath storing section 31, a part of thesheath 52 nearer the base end thereof is brought in contact with thestorage surface 38d and the guidingplane 36a due to its elasticity and the like. - As the
more sheath 52 is contained in thesheath storing section 31, thesheath 52 is sequentially stored against thestorage surface 38d clockwise as shown in FIG. 11D, FIG. 11C, and FIG. 11B. After thesheath 52 is contained and forms a wound circle, themore sheath 52 is contained in thesheath storing section 31 to be wound on thewound sheath 52 in another layer as shown in FIG. 11A, resulting in the completely storedsheath 52 as shown in FIG. 6 and FIG. 8. - In this way, a sheath of a treatment instrument having a predetermined elasticity is contained in the sheath storing section. An inner dimension and a depth of a recess of the sheath storing section are set in consideration of the elasticity, a diameter, and a length of the sheath. This enables an elongated sheath of a treatment instrument to be stably contained in a sheath storing section.
- A storage case of this embodiment includes an extracting hole formed therein, through which a sheath of a treatment instrument having a predetermined elasticity is extracted, and a handle mounting hole formed therein, in which a handle section of the treatment instrument is mounted and also from which the sheath extends. The extracting hole and the handle mounting hole are arranged in the storage case so that the central axis of the extracting hole and the central axis of the handle mounting hole are positioned in a predetermined relationship to each other. That is, these two holes are arranged so that a direction in which the sheath is extended from the extracting hole does not coincides with a direction in which the sheath is extended from the handle section, but these two directions intersect with each other. This arrangement allows an extracted shape of the sheath, which extends downward from the storage side opening of the extracting hole to contact once the guiding plane and then extends upward to the storage surface, to be defined to be a gentle radius of curvature which curves in a constant direction.
- Therefore, a pulling of the sheath contained in the sheath storing section of the storage case with a uniform pressure causes the sheath to be smoothly extracted outward, and a pushing of the sheath extracted out of the sheath storing section with a uniform pressure causes the sheath to be smoothly pushed down to be stored in a predetermined wound state.
- This configuration achieves a storage case which can be manufactured at a lower cost because the sheath can be wound and contained in a sheath storing section without a rotating drum for winding the sheath in the sheath storing section.
- It should be noted that
reference numeral 8 in FIG. 4 designates a protective cap. Theprotective cap 8 may be press-fitted to an outer circumferential surface of thesheath extracting section 33. In thetreatment instrument cartridge 9, theprotective cap 8 mounted to thesheath extracting section 33 as shown in FIG. 7 and FIG. 8 can keep the tip end portion of thesheath 52 extended from the extractinghole 33a and thetissue sampling section 51 separated from the exterior environment. Thetreatment instrument cartridge 9 is provided to a user after sterilization with the sterilizedprotective cap 8 provided thereto, for example in a sterilized bag. - In assembling the
treatment instrument cartridge 9, in this embodiment, thebiopsy forceps 50, and thefirst member 34 and thesecond member 35 of thecase body 30, all of which are already sterilized, are prepared for assembly, but these components may be first assembled into thetreatment instrument cartridge 9, and then be sterilized to be put into a sterilized bag. - Now, operations of an
endoscope system 1 which includes thetreatment instrument cartridge 9 configured in the way described above will be explained below. - In performing a surgical operation, a staff prepares one or more
treatment instrument cartridges 9 having a treatment instrument which is suitable to the purpose of the surgical operation. A staff places thetreatment instrument cartridges 9 at a predetermined position in an operation room. A staff also places acoupling tube 6 having an electric advancing and retractingdevice 40 at one end thereof, and anoperation instructing device 2 near thetreatment instrument cartridge 9. It should be noted that theoperation instructing device 2 is electrically connected to the controllingdevice 20. - At the point when an operator needs the treatment instrument, the operator informs a staff that request during an examination using an endoscope. Then the staff removes the
protective cap 8 on thetreatment instrument cartridge 9, which is placed in a cart (not shown), from thesheath extracting section 33, and inserts the exposedtissue sampling section 51 and the tip end portion of thesheath 52 into thehousing 41 of the electric advancing and retractingdevice 40. After the insertion, the staff inserts thetissue sampling section 51 and the tip end portion of thesheath 52 between therollers slit 42c in theforceps plug 42b to the inside of thecoupling tube 6. Then the staff passes the other end of thecoupling tube 6 to the operator. The operator connects the tip end of thecoupling tube 6 into the opening fortreatment instrument 12b, and operates theoperation instructing device 2 at hand to introduce thesheath 52 and the like into a body cavity. - It should be noted that, when the operator introduces the
sheath 52 into a body cavity, for example, air is sometimes delivered by theendoscope 10 to expand the body cavity in order to facilitate the observation of the body cavity. In this case, since thesheath 52 is inserted or retracted through theslit 42c in theforceps plug 42b, any pressure drops due to the insertion or retraction of thesheath 52 can be prevented. - In addition, since the
sheath 52 is inserted or retracted through theslit 42c in theforceps plug 42b, any leak of body fluid and the like in thecoupling tube 6 to the exterior environment can be prevented in the insertion or retraction of thesheath 52. - The operator locates the
tissue sampling section 51 and the tip end portion of thesheath 52 in thecoupling tube 6, and then operates theoperation instructing device 2 to cause the rollers 43 to rotate in a predetermined direction. As the rollers 43 rotate, thesheath 52 is advanced corresponding to the rotation of the rollers 43. That is, thetissue sampling section 51 and the tip end portion of thesheath 52 is advanced through thecoupling tube 6 into thetreatment instrument channel 11e of theendoscope 10 and then is advanced through thetreatment instrument channel 11e. Thetissue sampling section 51 is extracted out of thetip end opening 11d at thetip end 11a into a body cavity. During the advancement, thesheath 52 which is wound and contained in thesheath storing section 31 of thecase body 30 is extracted outward as shown in FIGS. 11A to 11D corresponding to the pushing or pulling operation of theoperation instructing device 2 by the operator. - Then the operator tells the staff to operate the handle section. The staff puts his/her fingers into the
finger engaging ring 54 and on theflange 55a at thehandle section 53 to perform an operation with his/her hand which causes thetissue sampling section 51 to move from its open position into its closed position or to rotate for a tissue sampling (not shown). - After the tissue sampling is completed, the operator performs an operation with his/her hand to cause the
sheath 52 to be retracted. This operation causes the rollers 43 to rotate in the direction opposite to the one described above, which makes thesheath 52 and thetissue sampling section 51 retract through thetreatment instrument channel 11e. When thesheath 52 and thetissue sampling section 51 reach a part of thecoupling tube 6 nearer the tip end thereof, the operator stops the retraction of thesheath 52. During the retraction, thesheath 52 is wound and contained in thesheath storing section 31 of thecase body 30 as shown in FIGS. 11D to 11A. - Then, the operator disconnects the tip end of the
coupling tube 6 from the opening fortreatment instrument 12b. Thecoupling tube 6 is passed to a staff from the operator with thetissue sampling section 51 being positioned in the part of thecoupling tube 6 nearer the tip end thereof. The staff draws back thetissue sampling section 51 from thecoupling tube 6, and performs remained procedures on the sampled tissue in a container such as a beaker which a staff prepared beforehand. Then the staff operates theoperation instructing device 2 to cause thesheath 52 to be further retracted so that thetissue sampling section 51 is disengaged from therollers housing 41. - After the disengagement, the staff takes away the
housing 41 of the electric advancing and retractingdevice 40 from thesheath extracting section 33, and attaches theprotective cap 8 to thesheath extracting section 33. This prevents thesheath 52 and thetissue sampling section 51 which is already inserted into the body cavity from being exposed to the exterior environment, and keeps them stored inside. It should be noted that theoperation instructing device 2 may be operated by an operator or a staff according to an instruction by the operator. When a new treatment instrument is introduced into a body cavity, a treatment section of the treatment instrument and a sheath tip end portion which are disposed in a newtreatment instrument cartridge 9 are introduced through thecoupling tube 6, which is connected into the opening fortreatment instrument 12b, into the body cavity for a treatment. - It should be noted that in this embodiment, an operator connects the
coupling tube 6, to which the electric advancing and retractingdevice 40 is connected, into the opening fortreatment instrument 12b, and then the operator inserts thetissue sampling section 51 and the tip end portion of thesheath 52 into thehousing 41 of the electric advancing and retractingdevice 40. However, one end of thecoupling tube 6, opposite to the end to which the electric advancing and retractingdevice 40 is connected, may be connected into the opening fortreatment instrument 12b beforehand. Alternatively, thetissue sampling section 51 and the tip end portion of thesheath 52 may be inserted into thehousing 41 of the electric advancing and retractingdevice 40 beforehand, and an operator may connect one end of thecoupling tube 6, opposite to the end to which the electric advancing and retractingdevice 40 is connected, into the opening fortreatment instrument 12b. This reduces an operator's workload. - As described above, the treatment instrument cartridge is configured by placing a treatment section of a treatment instrument, which is to be inserted through a treatment instrument channel of an endoscope, out of a storage case, storing an elongated sheath of the treatment instrument in a sheath storing section of the storage case, and placing a handle section of the treatment instrument in a treatment instrument holding section of the storage case. This configuration allows the elongated sheath of the treatment instrument to be contained in the sheath storing section in a stable state. Thus, when a treatment is performed with a treatment instrument being inserted through a treatment instrument channel of an endoscope in a surgical operation, the treatment instrument before use can be placed and left unattended in a sterile condition at a position close to an operator or in an operation room, and the treatment instrument after use can be immediately moved away from the operator and be left unattended. Even during the treatment instrument is left unattended, the sheath cannot come loose in spite of its elasticity, which eliminates any accidental hanging down of the sheath to a floor.
- The treatment instrument cartridge is positioned close to an operating portion of an endoscope when the treatment section of the treatment instrument and the sheath are introduced into a treatment instrument channel of an endoscope. So the treatment section of the treatment instrument can be introduced into a body cavity with a minimum extension of the sheath outward. This surely prevents the sheath from touching a floor due to a long extension thereof, and an operator can introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel alone by himself/herself.
- The coupling tube is coupled to the opening for treatment instrument of an endoscope at one end thereof, and to the main body of the electric advancing and retracting device disposed in a sheath extracting section of a storage case at the other end thereof. This configuration enables the treatment section of a treatment instrument and the sheath which are extracted from the sheath storing section of a treatment instrument cartridge to be inserted through a treatment instrument channel via the coupling tube without any exposure to the exterior environment when the treatment instrument is introduced into a body cavity.
- Therefore, there is no possibility of any scattering of unsanitary fluid when a sheath having an elasticity is withdrawn through the opening for treatment instrument of an endoscope. Therefore, in the withdrawal of a sheath, no staff needs to do the troublesome work to withdraw a sheath while covering the opening for treatment instrument with gauze.
- It should be noted that in the above-described embodiment, the treatment instrument is the
biopsy forceps 50, but the treatment instrument is not limited to this, and may be a high-frequency snare, a contrast tube, a basket forceps, and the like. - Now, referring to FIG. 13, a second embodiment of the present invention will be explained.
- An endoscope system 1A of this embodiment includes an
operation instructing device 2, anendoscope 10, a controllingdevice 20, atreatment instrument cartridge 9 in which asheath 52 of atreatment instrument 50 is contained in asheath storing section 31 of acase body 30, and an electric advancing and retractingdevice 40 as described above, and anelectric operation device 60 as well. - The
electric operation device 60 includes a plate of abase body 61. Thebase body 61 is provided with aring retaining section 62, aholding box 67, and aresting section 68. The holdingbox 67 is fixedly mounted to thebase body 61 by a pair offastening members box 67 is provided with arack 65 which hasstraight teeth 65a formed thereon and is movably held in forward and backward directions. A pinion gear 66a is provided in theholding box 67 which engages with thestraight teeth 65a on therack 65. The pinion gear 66a (not shown) is fixed to a shaft of a motor. With the pinion gear 66a being engaged with thestraight teeth 65a on therack 65, an operation of the motor causes the pinion gear 66a fixed to the motor shaft to rotate so that therack 65 moves in a forward or a backward direction. - A holding
section 63a is included in aslider retaining section 63 which is mounted to an end of therack 65 by usingsetscrews 64. The holdingsection 63a of theslider retaining section 63 is disposed to hold aslider 55 of ahandle section 53. Specifically, the holdingsection 63a holds theslider 55 so as to sandwich a body section which is located between a pair offlanges 55a on theslider 55. - The
ring retaining section 62 includes aring stand 62a and a projectedsection 62b. Thering stand 62a is fixed to thebase body 61. Thefinger engaging ring 54 of thehandle section 53 has thehole 54a formed therein which is arranged on the projectedsection 62b. This configuration makes thehandle section 53 fixedly held in theelectric operation device 60. - When the
finger engaging ring 54 is put on the projectedsection 62b in the predetermined way, one side of thefinger engaging ring 54 contacts thering stand 62a. In this state, a part of thehandle section 53 is rested on theresting section 68. Thus, thehandle section 53 of thebiopsy forceps 50 is disposed parallel to thebase body 61 with a space between them. - In the above configuration, the motor is controlled, for example by a
foot switch 69 which is electrically connected to the controllingdevice 20, to drive therack 65 to move. That is, a driving of the motor causes theslider 55 which is held by theslider holding section 63 at therack 65 to move forward or backward along the axis of thehandle section 53. As theslider 55 moves forward or backward, an operation wire in thebiopsy forceps 50 is moved to open or close thetissue sampling section 51. Specifically, an operation of aswitch 69a on thefoot switch 69 by an operator causes thetissue sampling section 51 to be opened, and an operation of aswitch 69b on thefoot switch 69 by an operator causes thetissue sampling section 51 to be closed. - It should be noted that in this embodiment, the
main body 3 and thegrip 4 of theoperation instructing device 2 have a groove forattachment 2b formed therein. The groove forattachment 2b is formed to integrally attach theoperation instructing device 2 to the insertingportion 11. As shown in FIG. 13, when the insertingportion 11 is disposed so as to engage with the groove forattachment 2b of theoperation instructing device 2, theoperation instructing device 2 and the insertingportion 11 are generally combined as a unit. - In this embodiment, the
handle section 53 is placed on theelectric operation device 60. So, thecase body 30 has asheath inserting hole 32c formed therein, instead of thehandle mounting hole 32a. Thesheath inserting hole 32c is a second through-hole configured to serve as a second defining section from which thesheath 52 extends in a predetermined direction. A part of thesheath 52 is fixed in thesheath inserting hole 32c to prevent any movement in an axial direction. Other configuration of the endoscope system 1A is similar to the first embodiment, and members which are the same or similar to those in the first embodiment are designated with like reference numerals, and will not be explained in detail below. - Now, operations of the endoscope system 1A configured in the way described above will be explained below.
- In a surgical operation with using the endoscope system 1A, a staff prepares one or more
treatment instrument cartridges 9 having a treatment instrument which is suitable to the purpose of the surgical operation. The staff places thetreatment instrument cartridges 9 at a predetermined position in an operation room. The staff also places acoupling tube 6 having an electric advancing and retractingdevice 40 at one end thereof, anelectric operation device 60, afoot switch 69, and anoperation instructing device 2 near thetreatment instrument cartridge 9. It should be noted that asignal cable 2a of theoperation instructing device 2, asignal cable 60a of theelectric operation device 60, and asignal cable 69c of thefoot switch 69 are electrically connected to the controllingdevice 20 beforehand. A handle section of the treatment instrument, which will be used first in the surgical operation, is placed in theelectric operation device 60 beforehand. - In order to use the treatment instrument during an examination using an endoscope, the operator connects the other end of the
coupling tube 6 into the opening fortreatment instrument 12b, as in the first embodiment. Also, the operator removes aprotective cap 8 on thetreatment instrument cartridge 9 from asheath extracting section 33, and inserts the exposedtissue sampling section 51 and the tip end portion of thesheath 52 into thehousing 41 of the electric advancing and retractingdevice 40 to place thetissue sampling section 51 and the tip end portion of thesheath 52 in thecoupling tube 6. - Then the operator disposes the inserting
portion 11 so as to engage with the groove forattachment 2b of theoperation instructing device 2. This allows the operator to hold the operating portion by his/her one hand, and holds theoperation instructing device 2 and the insertingportion 11 by the other hand. - Holding the
operation instructing device 2 and the insertingportion 11, the operator manipulates theoperation instructing device 2 to cause the rollers 43 to rotate in a predetermined direction. As the rollers 43 rotate, thetissue sampling section 51 and the tip end portion of thesheath 52 are advanced through thecoupling tube 6 into thetreatment instrument channel 11e. Thetissue sampling section 51 is extracted out of thetip end opening 11d at thetip end 11a into a body cavity. During the advancement, thesheath 52 which is wound and contained in thesheath storing section 31 of thecase body 30 is extracted outward as shown in FIGS. 11A to 11D. - Then the operator performs a tissue sampling. During the sampling, the operator manipulates the
operation instructing device 2 to cause thetissue sampling section 51 to be advanced or retracted, and simultaneously manipulates theswitches foot switch 69 to cause thetissue sampling section 51 to be opened and closed. It should be noted that the motor for driving the rack may be controlled by an operation hand switch which is provided to theoperation instructing device 2, instead of thefoot switch 69. - After the tissue sampling is completed, the operator manipulates the
operation instructing device 2 to cause the rollers 43 to rotate in the direction opposite to the one described above, which makes thesheath 52 and thetissue sampling section 51 retract through thetreatment instrument channel 11e and thecoupling tube 6. After further retraction, thetissue sampling section 51 is disengaged from therollers housing 41. During the retraction, thesheath 52 is wound and contained in thesheath storing section 31 as shown in FIGS. 11D to 11A. - After the disengagement, a staff takes away the
housing 41 of the electric advancing and retractingdevice 40 from thesheath extracting section 33, and attaches theprotective cap 8 to thesheath extracting section 33, and also removes thehandle section 53 of thebiopsy forceps 50 from theelectric operation device 60. This prevents thesheath 52 and thetissue sampling section 51 which are inserted into the body cavity once from being exposed to the exterior environment, and keeps them stored inside. - When a new treatment instrument is introduced into a body cavity, a handle section of a new treatment instrument mounted in the
treatment instrument cartridge 9 is placed in theelectric operation device 60, and a treatment section of the treatment instrument and a sheath tip end portion of the new treatment instrument mounted in thetreatment instrument cartridge 9 are introduced through thecoupling tube 6, which is connected into the opening fortreatment instrument 12b, into the body cavity for a treatment. - As described above, the treatment instrument cartridge is configured by extracting a treatment section of a treatment instrument, which is be inserted through a treatment instrument channel of an endoscope, outside of a storage case, storing an elongated sheath of the treatment instrument in a sheath storing section of the storage case, and placing a handle section of the treatment instrument in an electric operation device. This configuration allows an operator to introduce a treatment instrument of a treatment instrument cartridge into a treatment instrument channel, and to sample a tissue by manipulating the tissue sampling section for its opening and closing while manipulating the tissue sampling section for its advancement and retraction, alone by himself/herself. Other operations and effects of the treatment instrument cartridge are similar to those of the first embodiment.
- In the above-described embodiments, the
case body 30 has asheath storing section 31 in which thesheath 52 of thebiopsy forceps 50 is contained. However, the configuration of the treatment instrument cartridge is not limited to those in the embodiments, and a treatment instrument such as thesheath 52 of thebiopsy forceps 50 may be contained in acase body 30A shown in FIG. 14 and FIG. 15 to form atreatment instrument cartridge 9A. - As shown in FIG. 14, and FIG. 15, the
case body 30A of this embodiment includes a pair ofsheath storing sections 70. Thecase body 30A includes a pair oftubular members 71, a fixingplate 72, a pair ofsheath extracting sections 73, and sheath guiding tube (hereinafter, briefly referred to as a tube) 74. Thetubular member 71 is made of a transparent or semi-transparent resin material. This allows an operator and the like to visually check a state of thesheath 52 in thesheath storing section 70 through thetubular member 71. - The fixing
plate 72 may be a cylindrical member having a diameter the size of which is larger than a thickness thereof, and has flat surfaces, that is, guidingplanes 72a against which thesheath 52 abuts. The fixingplate 72 has a pair ofcircumferential grooves 72b formed at its outer periphery. To thecircumferential grooves 72b, an engaging section (designated byreference numeral 71g which will be explained below) on thetubular member 71 is engagedly inserted. It should be noted that the shape of the fixingplate 72 is not limited to a cylinder having a circular cross section, and may be a rectangular cylinder having a regular tetragonal cross section, regular hexagonal cross section, and the like. - The
tubular member 71 is formed into a stepped shape, and has a storagespace defining section 71 a having a larger diameter, an extractedshape adjusting section 71 b having a smaller diameter than that of the storagespace defining section 71a, and asheath extracting section 71c having a smaller diameter than that of the extractedshape adjusting section 71 b. Thesheath extracting section 71 c has an extractinghole 71 d formed therein. The extractinghole 71d is a first through-hole out of which the storedsheath 52 is extracted. It should be noted that the storagespace defining section 71 a has a generally same outline shape as that of theflat plate 72. In this embodiment, the storagespace defining section 71 a, the extractedshape adjusting section 71 b, and thesheath extracting section 71c are concentrically arranged. The extractinghole 71d is positioned centrally of thesheath extracting section 71 c. - The storage
space defining section 71 a hassheath storing sections 70 which is arecess 71e formed in the storagespace defining section 71a. Therecess 71e has astorage surface 71f which is the internal surface of therecess 71e, and thesheath 52 is placed in contact with thestorage surface 71f.Claws 71 g are provided on the internal surface of therecess 71e on the side of the opening in the storagespace defining section 71 a, theclaws 71g serving as the engaging section and extending toward to the center of the storagespace defining section 71 a. Theclaws 71 g are configured to be engagedly inserted into thecircumferential groove 72b. - A diameter φL of the
recess 71e, that is the internal dimension of therecess 71e, is determined in consideration of an elasticity and a length of thesheath 52 of thebiopsy forceps 50, as described above. When thesheath 52 is stored in therecess 71e with being wound up, the elasticity ofsheath 52 makes thesheath 52 unwound and stretched outward in a direction in which the winding of thesheath 52 is released, resulting in that thesheath 52 is pushed against thestorage surface 71f to be in contact with the storage surface. - The
recess 71e has a depth D which is determined in consideration of a diameter, a length of thesheath 52, and also a distance W between the guidingplane 72a and thecircumferential groove 72b into which theclaws 71 g is engagedly inserted (hereinafter, referred to as an engaged width). Specifically, with the wound andlaminated sheath 52 in contact with thestorage surface 71f of therecess 71e, there is a relationship between a height H of the wound sheath, the depth D, and an engaged width W as follows: - This relationship allows the
wound sheath 52 to be stably stored in therecess 71e of thesheath storing section 70. - The extracted
shape adjusting section 71b has a depth d which is determined in consideration of an elasticity of thesheath 52, as described above. A specific depth d is set so that, with thesheath 52 being wound and laminated in thesheath storing section 70, when thesheath 52 at the top layer contacts the guidingplane 72a and reaches the extractinghole 71d, thesheath 52 has a shape of a curved line having a gentle radius of curvature, as described above. In this embodiment also, thetubular member 71 may include only thesheath extracting section 71 c without the extractedshape adjusting section 71b. - The
sheath extracting sections 73 have adefining hole 73a formed therein which is a second through-hole configured to serve as a second defining section. The defininghole 73a in thesheath extracting sections 73 defines a direction in which thesheath 52 is inserted into thesheath storing sections 70 as predetermined when thesheath 52 passes through the defininghole 73a. Thesheath extracting sections 73 are integrally formed on the outer circumferential surface of the storagespace defining section 71 a, or formed as another member and integrally fixed on the outer circumferential surface of the storagespace defining section 71a by using adhesive for example. - The
tube 74 is coupled with thesheath extracting section 73 mounted to one of thetubular members 71 and thesheath extracting section 73 mounted to the other thetubular members 71. This makes thedefining hole 73a in one of thesheath extracting section 73 and defininghole 73a in the other ofsheath extracting section 73 in communication with each other. Thetube 74 may be wound around the outer circumferential surface of the fixingplate 72. - In this embodiment, the extracting
hole 71d of thecase body 30A is configured to have a central axis which intersects with the guidingplane 72a at a right angle. To the contrary, the defininghole 73a is arranged so that thesheath 52, which is wound along thestorage surface 71f, that is the inner surface, of therecess 71e and the guidingplane 72a, can be extended to be wound around the outer circumferential surface of the fixingplate 72 without any bending. - In this embodiment also, a plane including the central axis of the extracting
hole 71d and the plane including the central axis of the defininghole 73a are arranged to intersect with each other at a right angle, while the central axis of the extractinghole 71d and the central axis of the defininghole 73a are arranged not to intersect with each other. This means the central axis of the defininghole 73a is arranged so that the plane including the central axis is parallel to the guidingplane 72a. In addition, the central axis of the defininghole 73a is arranged to be tangent to an imaginary circle around the central axis of the extractinghole 71 d. - It should be noted that the pair of
tubular members 71 and the fixingplate 72 are integrally fixed to each other, for example by using adhesive, with theclaws 71 g on thetubular members 71 being engagedly inserted into thecircumferential grooves 72b of the fixingplate 72. The twotubular members 71 separated by the fixingplate 72 form thecase body 30A having twosheath storing sections 70. - In the
case body 30A, a predetermined length of thesheath 52 which has thetissue sampling section 51 is wound and contained in one of thesheath storing sections 70, while a predetermined length of thesheath 52 which has thehandle section 53 is wound and contained in the othersheath storing section 70. It should be noted that, to prevent any change of the sheath length of thesheath 52 contained in each of thesheath storing sections 70 in thecase body 30A, a sheath fixing section may be provided in thetube 74 to restrain the movement of thesheath 52. - In this way, in this embodiment, the
tissue sampling section 51 can be extracted, and also thehandle section 53 can be placed at any position with a suitable length of thesheath 52 in one of thesheath storing sections 70 being extracted, as described above. - A length of the
sheath 52 contained in one of thesheath storing sections 70 and a length of thesheath 52 contained in the othersheath storing section 70 can be adjusted as needed so that an extended length of thetissue sampling section 51 is changed. - As described above, the cartridge in this embodiment has two sheath storing sections. Into one of the sheath storing sections, a length of the sheath is wound and contained in consideration of how far the tissue sampling section is introduced into a body cavity, and into the other sheath storing section, a length of the sheath is wound and contained in order to allow a handle section of the sheath to move. This configuration enables an adjustment of an extracted length of the tissue sampling section as needed for a medical procedure. Also, a handle section of a treatment instrument can be placed at a position desired by an operator or the like for a medical procedure by extracting the sheath contained in the other sheath storing section.
- Other operations and effects of the treatment instrument cartridge are similar to those of the above-described embodiment.
- Having described the preferred embodiments of the invention referring to the accompanying drawings, it should be understood that the present invention is not limited to those precise embodiments and various changes and modifications thereof could be made by one skilled in the art without departing from the spirit or scope of the invention as defined in the appended claims.
Claims (26)
- An endoscope system, comprising:an endoscope including an inserting portion which has a treatment instrument channel formed therein;a treatment instrument cartridge, comprising:a treatment instrument, including: a treatment instrument inserting portion which is inserted through the treatment instrument channel and has a predetermined rigidity or elasticity; an treatment section which forms a tip end of the treatment instrument inserting portion; and an operating portion which is provided at a base end of the treatment instrument inserting portion and operates the treatment section; anda storage case, including: an inserting portion storing section having an inside surface for winding and containing the treatment instrument inserting portion; an extension port from which the tip end of the wound treatment instrument inserting portion is extended; and a holding section for holding a part of the wound treatment instrument inserting portion nearer the base end or the operating portion;an advancing and retracting device which has a driving power source for providing a driving power, and is provided between the treatment instrument inserting channel and the extension port to extract the treatment instrument inserting portion extended from the extension port out of the extension port and to push the treatment instrument inserting portion into the extension port;a controlling device electrically connected to the driving power source for controlling an operation of the driving power source; andan operation instructing device for issuing an instruction on an operation of the driving power source to the controlling device.
- The endoscope system according to claim 1, further comprising:an operation device electrically connected to the controlling device for electrically operating the operating portion, to which the operating portion of the treatment instrument is removably mounted.
- The endoscope system according to claim 1, wherein the storage case further comprises:a first defining section having a first through-hole in communication with the inserting portion storing section and the exterior for defining a direction in which a part of the treatment instrument inserting portion nearer one end thereof contained in the inserting portion storing section is extracted to the exterior; anda second defining section having a second through-hole in communication with the inserting portion storing section and the exterior for defining a direction in which a part of the treatment instrument inserting portion nearer the other end thereof contained in the inserting portion storing section is extracted to the exterior.
- The endoscope system according to claim 3, wherein
a central axis of the first through-hole and a central axis of the second through-hole do not intersect with each other, and a plane including the central axis of the first through-hole and a plane including the central axis of the second through-hole intersect with each other at a right angle. - The endoscope system according to claim 4, wherein
the first defining section is positioned centrally of the inserting portion storing section, and the second defining section is positioned relative to the outer circumferential surface of the inserting portion storing section. - The endoscope system according to claim 5, wherein
the central axis of the second through-hole in the second defining section is parallel to a line tangent to the outer circumferential surface of the inserting portion storing section. - The endoscope system according to claim 3, wherein the storage case further comprises, between the first defining section and the second defining section of the storage case:a guiding plane which is a plane positioned to intersect with the central axis of the first through-hole at a right angle; anda storage surface extending in a vertical direction from the guiding plane, the treatment instrument inserting portion being placed in contact with the storage surface due to an elasticity of the treatment instrument inserting portion.
- The endoscope system according to claim 3, wherein
the second defining section further comprises an operating portion holding section for holding the operating portion of the treatment instrument. - The endoscope system according to claim 8, wherein
the operating portion holding section holds the operating portion of the treatment instrument which is fitted therein with play. - The endoscope system according to claim 5, wherein
the storage case comprises two inserting portion storing sections, and each of the inserting portion storing sections has the first through-hole, the first through-holes being coaxially positioned. - A treatment instrument cartridge, comprising:a treatment instrument, including: an treatment instrument inserting portion which is inserted through a treatment instrument channel of an endoscope and has a predetermined rigidity or elasticity; a treatment section which forms a tip end of the treatment instrument inserting portion; and an operating portion which is provided at a base end of the treatment instrument inserting portion and operates the treatment section; anda storage case, including: an insertion port through which the tip end of the treatment instrument inserting portion is inserted, a guiding plane for guiding the treatment instrument inserting portion inserted through the insertion port in a predetermined direction, an inserting portion storing section having an inside surface for winding and containing the treatment instrument inserting portion which is guided by the guiding plane, and a holding section for positioning a part of the wound treatment instrument inserting portion nearer the base end thereof and for holding the operating portion.
- The treatment instrument cartridge according to claim 11, wherein
the holding section has a through-hole formed therein, and a central axis of the through-hole is parallel to a line tangent to the outer circumferential surface of the inserting portion storing section. - The treatment instrument cartridge according to claim 11, wherein
a central axis of the insertion port and a central axis of a through-hole in the holding section do not intersect with each other, and a plane including the central axis of the insertion port and a plane including the central axis of the through-hole in the holding section intersect with each other at a right angle. - The treatment instrument cartridge according to claim 11, wherein
the holding section holds the operating portion of the treatment instrument which is fitted therein with play. - The treatment instrument cartridge according to claim 11, wherein
the holding section has a section for rotatable holding in a form of a groove or projection, and the operating portion has a projected section for the groove or a recess for the projection. - The treatment instrument cartridge according to claim 11, further comprising,
a protective cover for covering a tip end of the treatment instrument inserting portion which is extracted from the insertion port. - A storage case, comprising:an insertion port through which a tip end of a treatment instrument inserting portion having a predetermined rigidity or elasticity is inserted, the treatment instrument inserting portion being inserted through a treatment instrument inserting channel included in a treatment instrument of an endoscope;a guiding plane for guiding the treatment instrument inserting portion into a predetermined direction after the insertion through the insertion port;an inserting portion storing section having an inside surface for winding and containing the treatment instrument inserting portion after the guidance by the guiding plane; anda holding section for positioning a part of the treatment instrument inserting portion nearer a base end thereof against an inside surface of the inserting portion storing section and for holding an operating portion.
- The storage case according to claim 17, wherein
the holding section has a through-hole formed therein, and a central axis of the through-hole is parallel to a line tangent to an outer circumferential surface of the inserting portion storing section. - The storage case according to claim 17, wherein
a central axis of the insertion port and a central axis of the through-hole in the holding section do not intersect with each other, and a plane including the central axis of the insertion port and a plane including the central axis of the through-hole in the holding section intersect with each other at a right angle. - The storage case according to claim 19, further comprising:a guiding plane which is a plane positioned to intersect with the central axis of the insertion port at a right angle; anda storage surface extending in a vertical direction from the guiding plane, the treatment instrument inserting portion being placed in contact with the storage surface due to an elasticity of the treatment instrument inserting portion.
- The storage case according to claim 17, wherein
the holding section holds the operating portion of the treatment instrument which is fitted therein with play. - The storage case according to claim 17, wherein
the holding section has a section for rotatable holding in a form of a groove or projection, and the operating portion has a projected section for the groove or a recess for the projection. - A storage case, comprising:fixing plates having a pair of planes which form guiding planes;a pair of cylindrical members, including:a first through-hole for defining a direction in which a treatment instrument inserting portion having an elongated shape and elasticity is extracted, the treatment instrument inserting portion being included in a treatment instrument together with a treatment section and an operating portion;a communicating hole in which a sheath extracting member including a second through-hole for defining a direction in which the treatment instrument inserting portion is extracted is placed,the pair of cylindrical members being placed in a vertical direction nearer respective planes of the fixing plates to form a first inserting portion storing section in which a part of the treatment instrument inserting portion nearer the treatment section is wound and contained, and a second inserting portion storing section in which a part of the treatment instrument inserting portion nearer the operating portion is wound and contained; anda guiding tube which is in communication between a sheath extraction member placed in the communication hole in the first inserting portion storing section and a sheath extracting member placed in the communicating hole in the second inserting portion storing section, and serves as a passage through which the treatment instrument inserting portion is inserted.
- The storage case according to claim 23, wherein
a central axis of the second through-hole is parallel to a line tangent to the outer circumferential surface of the inserting portion storing section. - The storage case according to claim 23, wherein
a central axis of the first through-hole and the central axis of the second through-hole do not intersect with each other, and a plane including the central axis of the first through-hole and a plane including the central axis of the second through-hole intersect with each other at a right angle. - The storage case according to claim 23, wherein:the central axis of the first through-hole is positioned to intersect with the plane which forms the guiding plane at a right angle; andthe storage case further comprises an inserting portion storing section which has a storage surface extending in a vertical direction from the plane, the treatment instrument inserting portion being placed in contact with the storage surface due to an elasticity of the treatment instrument inserting portion.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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US11/473,815 US7691054B2 (en) | 2006-06-23 | 2006-06-23 | Endoscope system, treatment instrument cartridge, and storage case |
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EP1872709A1 true EP1872709A1 (en) | 2008-01-02 |
EP1872709B1 EP1872709B1 (en) | 2012-11-28 |
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EP07000080A Not-in-force EP1872709B1 (en) | 2006-06-23 | 2007-01-03 | Endoscope system, treatment instrument cartridge, and storage case |
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Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP2085018A1 (en) * | 2008-02-01 | 2009-08-05 | Olympus Medical Systems Corporation | Medical treatment endoscope |
EP2116175A1 (en) * | 2008-05-09 | 2009-11-11 | Olympus Medical Systems Corporation | Medical system |
WO2011061544A1 (en) * | 2009-11-20 | 2011-05-26 | Ali Waqar Majeed | Cleaning apparatus |
US8021293B2 (en) | 2006-01-13 | 2011-09-20 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US8092371B2 (en) | 2006-01-13 | 2012-01-10 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US8439828B2 (en) | 2006-01-13 | 2013-05-14 | Olympus Medical Systems Corp. | Treatment endoscope |
US8444547B2 (en) | 2006-01-13 | 2013-05-21 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US8556805B2 (en) | 2006-01-13 | 2013-10-15 | Olympus Medical Systems Corp. | Rotational force transmission mechanism, force-attenuating apparatus, medical device, and medical instrument-operation mechanism |
US9173550B2 (en) | 2006-01-13 | 2015-11-03 | Olympus Corporation | Medical apparatus |
US9289112B2 (en) | 2006-01-13 | 2016-03-22 | Olympus Corporation | Medical treatment endoscope having an operation stick formed to allow a procedure instrument to pass |
Families Citing this family (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP5042593B2 (en) * | 2006-11-02 | 2012-10-03 | オリンパスメディカルシステムズ株式会社 | Stent recovery device |
US20090118575A1 (en) * | 2007-11-06 | 2009-05-07 | Olympus Medical Systems Corp. | Endoscopic system, treatment section operation check instrument for the same, and treatment section operation check method |
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CN102697442B (en) * | 2012-04-24 | 2014-10-08 | 王东 | Flexible endoscope system based on electronic-control drive apparatus |
US20150073342A1 (en) * | 2013-09-06 | 2015-03-12 | Catheter Robotics Inc. | Linearly Stationary Catheter Drive Assemblies For Remote Catheter Positioning Systems |
GB2562110A (en) | 2017-05-05 | 2018-11-07 | Creo Medical Ltd | Apparatus for sterilising an instrument channel of a surgical scoping device |
CN113057563A (en) * | 2021-03-23 | 2021-07-02 | 温州医科大学附属第一医院 | An automatic control device for endoscopic manipulation instruments |
KR102496046B1 (en) * | 2022-05-06 | 2023-02-07 | 주식회사 메디인테크 | Instrument Controller |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5695491A (en) | 1994-11-22 | 1997-12-09 | Washington Research Foundation | Endoscopic accessory and containment system |
JP2004208961A (en) | 2002-12-27 | 2004-07-29 | Olympus Corp | Endoscope conduit washing apparatus |
EP1568306A1 (en) | 2004-02-26 | 2005-08-31 | Olympus Corporation | Endoscope |
EP1602319A1 (en) | 2004-06-02 | 2005-12-07 | Olympus Corporation | Operating instrument system for endoscope |
JP2005334132A (en) | 2004-05-25 | 2005-12-08 | Olympus Corp | Treatment appliance for endoscope |
Family Cites Families (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CA935059A (en) * | 1970-02-27 | 1973-10-09 | Jewett-Ashley Holding Corp. | Catheter device |
US5431645A (en) * | 1990-05-10 | 1995-07-11 | Symbiosis Corporation | Remotely activated endoscopic tools such as endoscopic biopsy forceps |
US5735861A (en) * | 1995-09-06 | 1998-04-07 | Wilson-Cook Medical, Inc. | Channel mounted activating mechanism for an endoscopic ligator |
JP2853623B2 (en) | 1994-12-15 | 1999-02-03 | 株式会社立売堀製作所 | Fire hydrant equipment |
JP2905721B2 (en) | 1995-04-27 | 1999-06-14 | 消火栓機工株式会社 | Fire hydrant for ceiling installation |
JP3085912B2 (en) | 1996-09-13 | 2000-09-11 | 株式会社立売堀製作所 | Ceiling-mounted fire hydrant device |
JP3379406B2 (en) * | 1997-09-24 | 2003-02-24 | 富士写真光機株式会社 | Ultrasound probe inserted endoscopically |
US6171234B1 (en) * | 1998-09-25 | 2001-01-09 | Scimed Life Systems, Inc. | Imaging gore loading tool |
GB9913264D0 (en) * | 1999-06-09 | 1999-08-04 | Raychem Sa Nv | Detent for optical fibres |
JP4504696B2 (en) * | 2004-02-03 | 2010-07-14 | オリンパス株式会社 | Endoscopic treatment tool, endoscope, and endoscope treatment system |
JP2005237659A (en) * | 2004-02-26 | 2005-09-08 | Olympus Corp | Endoscopic treatment system |
US7524284B2 (en) * | 2006-02-06 | 2009-04-28 | Olympus Medical Systems Corp. | Endoscopy system |
-
2006
- 2006-06-23 US US11/473,815 patent/US7691054B2/en active Active
- 2006-11-07 JP JP2006302070A patent/JP4875462B2/en not_active Expired - Fee Related
-
2007
- 2007-01-03 EP EP07000080A patent/EP1872709B1/en not_active Not-in-force
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5695491A (en) | 1994-11-22 | 1997-12-09 | Washington Research Foundation | Endoscopic accessory and containment system |
JP2004208961A (en) | 2002-12-27 | 2004-07-29 | Olympus Corp | Endoscope conduit washing apparatus |
EP1568306A1 (en) | 2004-02-26 | 2005-08-31 | Olympus Corporation | Endoscope |
JP2005334132A (en) | 2004-05-25 | 2005-12-08 | Olympus Corp | Treatment appliance for endoscope |
EP1602319A1 (en) | 2004-06-02 | 2005-12-07 | Olympus Corporation | Operating instrument system for endoscope |
Cited By (13)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8444547B2 (en) | 2006-01-13 | 2013-05-21 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US8021293B2 (en) | 2006-01-13 | 2011-09-20 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US8092371B2 (en) | 2006-01-13 | 2012-01-10 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US8439828B2 (en) | 2006-01-13 | 2013-05-14 | Olympus Medical Systems Corp. | Treatment endoscope |
US8556805B2 (en) | 2006-01-13 | 2013-10-15 | Olympus Medical Systems Corp. | Rotational force transmission mechanism, force-attenuating apparatus, medical device, and medical instrument-operation mechanism |
US8617054B2 (en) | 2006-01-13 | 2013-12-31 | Olympus Medical Systems Corp. | Medical treatment endoscope |
US9173550B2 (en) | 2006-01-13 | 2015-11-03 | Olympus Corporation | Medical apparatus |
US9289112B2 (en) | 2006-01-13 | 2016-03-22 | Olympus Corporation | Medical treatment endoscope having an operation stick formed to allow a procedure instrument to pass |
US9308049B2 (en) | 2006-01-13 | 2016-04-12 | Olympus Corporation | Medical treatment endoscope |
EP2085018A1 (en) * | 2008-02-01 | 2009-08-05 | Olympus Medical Systems Corporation | Medical treatment endoscope |
EP2116175A1 (en) * | 2008-05-09 | 2009-11-11 | Olympus Medical Systems Corporation | Medical system |
WO2011061544A1 (en) * | 2009-11-20 | 2011-05-26 | Ali Waqar Majeed | Cleaning apparatus |
US9126241B2 (en) | 2009-11-20 | 2015-09-08 | Ali Waqar Majeed | Cleaning apparatus |
Also Published As
Publication number | Publication date |
---|---|
US20070299304A1 (en) | 2007-12-27 |
US7691054B2 (en) | 2010-04-06 |
JP2008000580A (en) | 2008-01-10 |
EP1872709B1 (en) | 2012-11-28 |
JP4875462B2 (en) | 2012-02-15 |
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